MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Yoshida, Koki
Ishizuka, Takashi
Arai, Satoshi
Abrégé
An object of the invention is to obtain a position of each leaf with high accuracy by a configuration that is easy to be manufactured in a multileaf collimator. The multileaf collimator includes a plurality of leaves, and a reflection surface that reflects light emitted from a light source is formed on a peripheral end surface, other than a collimated end surface a, among surrounding end surfaces of the leaf. The peripheral end surface includes a longitudinal end surface d opposite to the collimated end surface a, and an upper lateral end surface b extending from one end of the longitudinal end surface d toward the collimated end surface a. The reflection surface may be a region where the peripheral end surface is subjected to reflection processing.
A61N 5/10 - RadiothérapieTraitement aux rayons gammaTraitement par irradiation de particules
G21K 1/04 - Dispositions pour manipuler des particules ou des rayonnements ionisants, p. ex. pour focaliser ou pour modérer utilisant des diaphragmes, des collimateurs utilisant des diaphragmes à ouverture variable, des obturateurs, des hacheurs
2.
MULTI-LEAF COLLIMATOR AND RADIATION THERAPY DEVICE
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Yoshida, Koki
Ishizuka, Takashi
Arai, Satoshi
Abrégé
The purpose of the present invention is to obtain the highly accurate positions of respective leaves in a multi-leaf collimator with a simply-manufactured configuration. This multi-leaf collimator comprises a plurality of leaves (14), wherein a reflective surface (28), which reflects light emitted from a light source (20), is formed on a peripheral end surface which is not a collimate end surface among peripheral end surfaces in each of the leaf (14). The peripheral end surface includes: a longitudinal end surface d on the side opposite to the collimate end surface a; and an upper transverse end surface b extending toward the collimate end surface a from one end of the longitudinal end surface d. The reflective surfaces (28) may be regions where reflective machining is performed on the peripheral end surfaces.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Fukuda Hideki
Iwamoto Tomoyuki
Abrégé
This tire holding device (10) comprises: a lower rim (110) capable of supporting one side of a tire (TR), in the width direction (Dw); an upper rim (120) capable of supporting the other side of the tire (TR) in the width direction (Dw); a lifter (150) that brings the upper rim (120) closer to and away from the lower rim (110) and sandwiches the tire (TR) from both sides in the width direction (Dw), using the lower rim (110) and the upper rim (120); a holding shaft (130) provided in the lower rim (110), protruding towards the upper rim (120), and comprising a plurality of engagement sections in the outer circumference thereof, along the axial direction (Da); an engagement unit (140) that is provided in the upper rim (120), can engage with an engagement section so as to perform positioning in the axial direction (Da), and is movable between an engagement position at which same is engaged with an engagement section and a retracted position at which same is retracted in a direction orthogonal to the axial direction (Da); and a clamp drive unit (160) that moves the engagement unit (140) to the engagement position and the retracted position.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Imamura Morihiro
Yoneda Hiroaki
Matsunaga Kunio
Tachibana Makoto
Abrégé
A tire inspection device according to the present invention is provided with a support part for supporting a tire such that the central axis line of the tire follows the vertical direction, a lifting and lowering unit for fitting a rim and the tire by moving the tire and rim relative to each other in the vertical direction, a position detection unit for detecting the position of the surface of the tire in the vertical direction using at least three detection points, and a posture detection unit for detecting tire posture information on the basis of the position information detected by the position detection unit.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Agawa Jiro
Seimoto Yasutaka
Yoneda Hiroaki
Matsunaga Kunio
Abrégé
This tire marking device is a device for performing marking on a tire, and is equipped with: a disc portion that has a rotary shaft which is adjusted to a substantially vertical position with respect to the print surface of the tire; a plurality of printing portions that are provided to the disc portion so as to be movable forwardly and backwardly with respect to the print surface and are arranged around the rotary shaft; and a print drive portion that moves forward at least one of the printing portions which is disposed at a printing position facing the print surface of the tire.
B60C 13/00 - Flancs du pneumatiqueProtection, décoration, marquage ou opérations similaires concernant ces derniers
B41K 3/10 - Appareils à timbrer ayant des moyens incorporés pour supporter les objets à timbrer avec des surfaces de timbrage situées au-dessus de la surface supportant l'objet et se déplaçant à angle droit par rapport à la surface à timbrer ayant des moyens automatiques pour changer les caractères, p. ex. dispositifs de numérotage
B60C 19/00 - Autres structures ou éléments du pneumatique
G01M 1/26 - Détermination du balourd en donnant à l'objet à tester un mouvement d'oscillation ou de rotation avec aménagements particuliers pour le repérage, p. ex. par perforation
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Yokoo Kazutoshi
Kajitani Fumito
Shintani Koji
Abrégé
A tire preheating apparatus (50) according to the present invention is provided with: an outer preheating section (51) that surrounds the outside of a green tire (40X) having an easily-vulcanized region (A2) and a hardly-vulcanized region (A1) and heats the green tire (40X) to room temperature or more from the outer surface side of the green tire (40X) at temperature less than temperature at which a vulcanization reaction is accelerated in the green tire; and an inner preheating section (54) that is disposed inside the green tire (40X) and heats the green tire (40X) to the room temperature or more from the inner surface side of the green tire (40X) at temperature less than the temperature at which the vulcanization reaction is accelerated in the green tire (40X). The outer preheating section (51) has a first tire heater (52) that heats the outer surface of the easily-vulcanized region (A2) and a second tire heater (53) that heats the outer surface of the hardly-vulcanized region (A1) at a heating value higher than that of the first tire heater (52).
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Matsunaga Kunio
Ueda Tatsuya
Imamura Morihiro
Yoneda Hiroaki
Abrégé
This tire marker is a tire marker used to mark a tire and provided with: a printing section capable of performing printing on the tire; a rotation position adjustment roller that comes in contact with a part of the tire and rotates to cause the tire to rotate about an axial line of the tire; and a rotation driving section that rotates the rotation position adjustment roller.
B29D 30/06 - Pneumatiques ou leurs parties constitutives
B05C 13/02 - Moyens pour manipuler ou tenir des objets, p. ex. des objets individuels pour des objets particuliers
G01M 1/26 - Détermination du balourd en donnant à l'objet à tester un mouvement d'oscillation ou de rotation avec aménagements particuliers pour le repérage, p. ex. par perforation
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Urakami Yoshihito
Moribe Takashi
Hanada Shuichi
Takahashi Kazuhito
Agawa Jiro
Abrégé
A kneader (1) has: a casing (3) having an insertion opening (9) in the upper part thereof and having therein rotors (4) provided with blade sections (16) for kneading an object to be kneaded; a floating weight (7) for closing the insertion opening (9); and a floating weight movement mechanism (10) having a horizontal movement section (11) capable, above the insertion opening (9), of horizontally moving the floating weight (7), which is in a supported state, between a delivering and receiving position (P2) which is immediately above the insertion opening (9) and a retracted position (P3) which is located to a side of the insertion opening (9), the floating weight movement mechanism (10) being capable of moving the floating weight (7) from the delivering and receiving position (P2) to a closing position (P1) while the floating weight (7) is separated from the horizontal movement section (11), the closing position (P1) being the position where the insertion opening (9) is closed.
B01F 7/04 - Mélangeurs à agitateurs tournant dans des récipients fixes; Pétrins avec agitateurs tournant autour d'un axe horizontal ou incliné à pales ou à bras
B29B 7/18 - MélangeMalaxage discontinu, avec dispositifs mécaniques de mélange ou de malaxage, c.-à-d. de type travaillant par charges avec dispositifs de mélange ou de malaxage mobiles rotatifs avec plus d'un arbre
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Seimoto Yasutaka
Ueda Tatsuya
Yoneda Hiroaki
Matsunaga Kunio
Abrégé
This printing apparatus is provided with: first and second supply rollers that supply a pair of ink ribbons; first and second winding-up rollers that wind up the pair of ink ribbons that have been withdrawn from the first and second supply rollers and that pass through a printing position; and a roller driving section that rotates the first and second winding-up rollers. The roller driving section has a rotation driving apparatus in which a rotation shaft is rotatable in forward and reverse directions, a first transmission mechanism that transmits only the forward rotation of the rotation shaft to the first winding-up roller, and a second transmission mechanism that transmits only the reverse rotation of the rotation shaft to the second winding-up roller.
B05C 13/02 - Moyens pour manipuler ou tenir des objets, p. ex. des objets individuels pour des objets particuliers
B29D 30/06 - Pneumatiques ou leurs parties constitutives
G01M 1/26 - Détermination du balourd en donnant à l'objet à tester un mouvement d'oscillation ou de rotation avec aménagements particuliers pour le repérage, p. ex. par perforation
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Kajitani Fumito
Yokoo Kazutoshi
Shintani Koji
Abrégé
A tire vulcanizer (1) of the present invention is provided with: an elevatable center post (16) that supports a green tire (30X); and a heating part (23) that is fixed to the center post (16) and disposed inside the green tire (30X) to transmit heat from the inside of the green tire (30X) to the green tire (30X) with radiation heat.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Kajitani Fumito
Yokoo Kazutoshi
Shintani Koji
Abrégé
The tire vulcanizer of the present invention is provided with bead rings (5, 6) that support a green tire (30X), and a heater (23) that heats, from the inner side of the green tire (30X) supported by the bead rings (5, 6), the green tire (30X) by radiation heat of different quantities in the tread-width direction of the green tire (30X).
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Urakami Yoshihito
Agawa Jiro
Moribe Takashi
Noguchi Shinichi
Abrégé
A kneading machine (2) equipped with: a pair of rotors (44) disposed with a gap (SP2) therebetween; a casing (45) in which are formed a chamber (C2) in which the pair of rotors (44) are disposed, an inlet port (51) for introducing a material to be kneaded (W) into the chamber (C2), and an outlet port (52) from which the material that has been kneaded (W) is discharged from the chamber (C2); a sensor (80) disposed above the pair of rotors (44) for detecting the position of the material being kneaded (W) or fluctuations in pressure; and a control unit (82) for controlling the rotation of the pair of rotors (44) on the basis of the detection results of the senor (80).
B29B 7/18 - MélangeMalaxage discontinu, avec dispositifs mécaniques de mélange ou de malaxage, c.-à-d. de type travaillant par charges avec dispositifs de mélange ou de malaxage mobiles rotatifs avec plus d'un arbre
B01F 7/00 - Mélangeurs à agitateurs tournant dans des récipients fixes; Pétrins
B01F 13/00 - Autres mélangeurs; Installations pour effectuer des mélanges comportant des combinaisons de mélangeurs de types différents
13.
TIRE HOLDING APPARATUS AND TIRE TESTING SYSTEM PROVIDED WITH SAID TIRE HOLDING APPARATUS
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Ueda Tatsuya
Tachibana Makoto
Abrégé
A tire holding apparatus (1) is provided with a first support part (2) for supporting a tire (T), a second support part (3) for supporting the tire (T), and an air supply and removal part (5) for supplying and removing air from the inside of the tire (T). The second support part (3) has a protrusion (33) that protrudes toward the first support part (2). The air supply and removal part (5) has a first flow path (F1) for allowing air to flow, a second flow path (F2) for allowing air to flow from an opening (331) formed at the leading end of the protrusion (33) to the inside of the tire (T), and a collection part (53) that is attached to the opening (331) and collects foreign matter (G) that has been mixed into the second flow path (F2) from the inside of the tire (T).
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Tachibana Makoto
Imamura Morihiro
Abrégé
A tire holding device is provided with a guide (50) disposed between a pair of conveyors (27a, 27b) in a planar view and on at least an upstream side or downstream side of an upper rim (26A) or lower rim (26B) in a tire conveyance direction. When the tire (T) is made to approach the upper rim (26A) or lower rim (26B) by a lifting and lowering apparatus (29), the guide (50) guides the tire (T) so that the center of the tire (T) in the tire conveyance direction coincides with the center of the upper rim (26A) or lower rim (26B).
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Toyohara Takashi
Yoshioka Nobuo
Abrégé
This information presentation device (20) is for a crane which is provided with: a boom that extends above an object which is to be a suspended load; a trolley that is movable along the boom; a suspending means that is installed on the trolley and vertically movable while suspending the object; and an operator's cab that is installed above the object and has an operation window provided so as to allow an operator in an operator's seat to view the object suspended therebelow. The information presentation device (20) is provided with: a display unit (222) that can display predetermined image information in the field of vision when the operator looks in at the operation window; an operation assistance information acquisition unit (211) that acquires operation assistance information for aiding in the operation of suspension work by the operator; and an image information generating unit (212) that generates image information including at least the acquired operation assistance information and outputs the generated image information to the display unit (222).
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Tsumura Yoichiro
Okai Takashi
Kobayashi Masato
Abrégé
A container position detecting device (20) comprises: a detection light emitting unit (25) that emits detection light (L) from above so as to intersect the top edge (E) of an already-placed container (C2) that is already placed in a container yard (G); a first imaging unit (27) that detects first detection light (L1) shining on a suspended container (C1) and second detection light (L2) shining on the top face of the already-placed container (C2) by imaging, from diagonally above, the area illuminated by the detection light (L); and a container position determining unit (55) that finds, on the basis of the first detection light (L1) and the second detection light (L2), a container position (A) to place the container (C1).
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Shintani Koji
Hineno Yoshikatsu
Abrégé
This mold heating device (100) is a mold heating device (100) for heating a mold (20) for vulcanizing a tire (T), and is provided with: an electric heater (101) inside which a heating wire (111) is disposed, the electric heater (101) being flexible and wound onto the peripheral surface of the mold (20); and a connecting part (120) for connecting the ends of the electric heater (101) in the circumferential direction so that the circumferential length of the electric heater (101) can be changed.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Tomoto Keiichi
Morita Mitsuru
Hineno Yoshikatsu
Abrégé
The tire support apparatus (11) is equipped with: a first rim support section (23); a second rim support section (30) provided so as to face the first rim support section (23); a frame (15) having a guide (16) for movably guiding the second rim support section (30) in the direction that approaches and distances from the first rim support section (23); a conveyor unit (40) installed so as to be capable of moving along the guide (16); a driving unit(44) for moving the conveyor unit (40) along the guide (16); an engagement mechanism (50) capable of engaging the second rim support section (30) with the frame (15) at a standby position that is at a distance from the first rim support section (23); and a support-accepting section (58) for supporting the second rim support section (30), when engagement by the engagement mechanism (50) has been released, so as to be able to move as a unit with the conveyor unit (40) along the guide (16).
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Sato Takashi
Sawada Yuichiro
Inoue Atsushi
Tachibana Makoto
Abrégé
This tire reaction force measurement device (50) is provided with: a tire rotation shaft shaft vibration acquisition unit (55) for rotating an inspected tire (T) which has been mounted onto a tire rotation shaft (20), and acquiring axial vibration data; a load wheel axial vibration acquisition unit (56) for rotating a load wheel (40) and acquiring shaft vibration data; a frequency computation unit (57) for calculating the frequency of vibration data acquired by the tire rotation shaft shaft vibration acquisition unit (55) and the load wheel shaft vibration acquisition unit (56); a reaction force acquisition unit (51) for rotating the tire rotation shaft (20) while the inspected tire (T) is contacted by the load wheel (40), and acquiring reaction force measurement data received by the load wheel (40); and a reaction force data generation unit (58) for generating reaction force data in which the frequency component computed by the frequency computation unit (57) has been eliminated from the reaction force measurement data.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Monzen Tadaaki
Kobayashi Masato
Abrégé
A container height detection device is provided with: a measuring unit (30) that measures the heights of containers in a noncontact manner, said measuring unit being capable of a horizontal sweep; a horizontal data acquisition unit (45) that acquires horizontal position data of the measuring unit (30); a height data set generating unit (46) that, on the basis of the height data of the containers (C) measured by the measuring unit (30) and the horizontal data acquired corresponding to the height data, associates height data with predetermined container arrangement ranges so as to generate a height data set for each; and a container height determination unit (47) that determines the stacking height of the containers in a container arrangement range to be measured on the basis of the respective height data set.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Tatemi Hiroki
Yusa Keisuke
Abrégé
This unloading device is equipped with a pair of support bodies (5) for supporting a lateral surface of a vulcanized tire (W) which was vulcanized by a tire vulcanizer (2) from below in the vertical direction, and a movement unit (6) for moving the support bodies (5). The movement unit (6) has: a horizontal movement mechanism (64) for moving the support bodies (5) in the horizontal direction from a position at which it is possible to retrieve the vulcanized tire (W) from the tire vulcanizer (2) to a position at which it is possible for a PCI device (3) for cooling the vulcanized tire (W) to hold the vulcanized tire (W); and a transport mechanism (66) for transporting the vulcanized tire (W) received from the PCI device (3) by the support bodies (5) to a discharge end (8).
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Fujisawa Noboru
Abrégé
A drive device (200) comprises: a plurality of main motors (123A, 123B, 123C, 123D) each having a rated capacity capable of coping with a rated load by the main motors, the number of which is reduced by at least one and performing a main operation in cooperation with each other; a plurality of main inverters (221A, 221B, 222A, 222B, 223A, 223B, 224A, 224B) having capacities corresponding to the main motors; converters (211, 212, 213, 214) having capacities corresponding to the main inverters; an auxiliary motor (133) for performing an auxiliary operation; and a control unit (230). At least one converter or main inverter is connected to the auxiliary motor (133) side.
H02P 5/74 - Dispositions spécialement adaptées à la régulation ou la commande de la vitesse ou du couple d’au moins deux moteurs électriques pour commander au moins deux moteurs dynamo-électriques à courant alternatif
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Ueda Tatsuya
Tachibana Makoto
Abrégé
This tire-abrading device (1), which abrades the surface of a tire (T), is provided with the following: a grindstone-holding part (40) that holds a grindstone (41) that abrades the surface of the tire (T); a cover (50) that covers the grindstone (41) held by the grindstone-holding part (40) and is positioned such that a gap (S) is formed between said cover (50) and the surface of the tire (T); and a gas-layer-forming part (60) that forms a gas layer that prevents grinding dust from the abraded tire (T) from being ejected through the gap (S) formed between the edge of the cover (50) and the surface of the tire (T).
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Tomoto Keiichi
Agawa Jiro
Abrégé
A tire vulcanizer system (1) in which multiple tire vulcanizers (2), provided with a frame (3) and a vulcanizing mechanism (4) that is supported by the frame (3) and is for vulcanizing green tires, are connected, wherein the tire vulcanizers (2) are provided with respective alignment sections (50), which are provided on the respective frames (3) and are for aligning the level positions of adjacent frames (3) relative to each other.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Myojin Hisaya
Abrégé
This assembling equipment (20) for a structure (10) comprises a crane (22) that is provided in a first area (F1), and a transporting unit (23) that is provided in a second area (F2) that is a lower location than the first area (F1), on the top face of which the structure (10) is assembled by the crane (22), and that can transport the completed structure (10) to outside the second area (F2).
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Uchida, Koji
Monzen, Tadaaki
Kusano, Toshiyuki
Yoshioka, Nobuo
Abrégé
[Problem] To provide a wire rope vibration prevention apparatus for a rope-trolley-type crane, having a low cost and comprising a simple structure. [Solution] A wire rope vibration prevention apparatus for a rope-trolley-type crane (1), provided with: a horizontal member (5) arranged horizontally; a winding drum (7) on which a wire rope (6) can be wound, the winding drum (7) being installed along the horizontal member; a main trolley (8) capable of moving between the front-end section (5f) and the rear-end section (5r) of the horizontal member; and a hanger (9) provided on the main trolley and suspended from the wire rope via a trolley sheave. The wire rope vibration prevention apparatus includes: a tension detection means (24A, 24B) for detecting the tension from moment to moment on the wire rope; and a tension control means (20, 30) for controlling the tension on the wire rope so that the fluctuation component of the tension on the wire rope is reduced in response to the tension on the wire rope detected by the tension detection means.
B66C 13/10 - Dispositifs auxiliaires pour commander les mouvements des charges suspendues ou pour empêcher le câble de prendre du mou pour empêcher le câble de prendre du mou
27.
TIRE TRANSPORT METHOD, TIRE TRANSPORT AND FASTENING APPARATUS, AND TIRE INSPECTION SYSTEM
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Seimoto Yasutaka
Agawa Jiro
Imamura Morihiro
Abrégé
Provided is a tire transport method for a tire inspection system (1) in which a tire (T) transported from the upstream side is fastened by an upper rim (65) and a lower rim (66), and a measurement is performed, wherein the method includes transport stem in which a transport mechanism (16) having a pair of transport bodies (22) split in the width direction transports the tire (T) to a fastening location for fastening, and a parting step in which the pair of transport bodies (22) are parted in the width direction, such that it is possible for the lower rim (66) to pass between the pair of transport bodies (22).
B60C 19/00 - Autres structures ou éléments du pneumatique
B65G 15/12 - Transporteurs comportant des surfaces porteuses de charges sans fin, c.-à-d. des tapis roulants ou autres systèmes équivalents, auxquelles l'effort de traction est transmis par des moyens différents des éléments d'entraînement sans fin de même configuration comprenant plusieurs surfaces sans fin travaillant ensemble et à axes parallèles longitudinaux, ou une multiplicité d'éléments parallèles, p. ex. des cordes formant une surface sans fin avec plusieurs courroies sans fin
B65G 21/14 - Châssis ou carters de support ou de protection pour transporteurs sans fin ou éléments de traction des transporteurs à courroies ou à chaînes mobiles ou à pièces interchangeables ou relativement mobilesDispositifs pour déplacer le châssis ou des parties de celui-ci pour permettre le réglage de la longueur ou du profil des porte-charges ou de l'élément de traction
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Okada Shinji
Morita Mitsuru
Goto Shinya
Tohmoto Keiichi
Agawa Jiro
Abrégé
The tire vulcanizer (1) is provided with an unloading device (20). The unloading device (20) removes a vulcanized tire (W2) that has been vulcanized in the main body of the vulcanizer and conveys same to a cooling position (P2) at which the vulcanized tire (W2) is cooled, and conveys the vulcanized tire (W2) that has been cooled at the cooling position (P2) to a discharge position (P3) for transfer to an exporting device for discharging the vulcanized tire (W2). The unloading device (20) is provided with a support section (25) capable of supporting the vulcanized tire (W2), a rotational movement section (40) for rotating the support section (25) in a plane, and a linear movement section (30) for moving the support section (25) linearly.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Konno Yuya
Kishimoto Hisanori
Yasui Toyoaki
Moribe Takashi
Abrégé
A kneader (1) for kneading a material to be kneaded (W) with kneading rotors (4, 5) in a kneading chamber (C), which is provided with: a chamber (2) that divides the kneading chamber (C) from the outside; a hard coating film (20) that covers an inner surface (2c) of the chamber (2), said surface (2c) facing the kneading chamber (C), and is formed of a material having wear resistance with respect to the material to be kneaded (W); and a protective member (21) that covers the edge portion (20a) of the hard coating film (20) on the inner surface (2c) of the chamber (2) and is formed of a material which is tougher than the material that constitutes the hard coating film (20).
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Moribe Takashi
Agawa Jiro
Yamashita Yorihiro
Hanada Shuichi
Takahashi Kazuhito
Abrégé
This mixer is provided with: a chamber (2) in which a mixing chamber (C) is formed for housing a mixing material (W); a mixing rotor (4(5)) which is arranged to pass through the chamber (2) and which stirs the mixing material (W) inside of the mixing chamber (C) by rotating about an axis line (P1(P2)); a seal member (22) which seals the space between the chamber (2) and the mixing rotor (4(5)); a lubricating oil supply unit (25) which supplies a lubricating oil to between the chamber (2) and the mixing rotor (4(5)); a detection unit (26) which detects a state quantity which varies with the state of sealing between the chamber (2) and the mixing rotor (4(5)); and a control unit (27) which controls the amount of lubricating oil (O) supplied from the lubricating oil supply unit (25) on the basis of the result of detection in the detection unit (26).
B29B 7/18 - MélangeMalaxage discontinu, avec dispositifs mécaniques de mélange ou de malaxage, c.-à-d. de type travaillant par charges avec dispositifs de mélange ou de malaxage mobiles rotatifs avec plus d'un arbre
B01F 7/02 - Mélangeurs à agitateurs tournant dans des récipients fixes; Pétrins avec agitateurs tournant autour d'un axe horizontal ou incliné
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Kobayashi Masato
Abrégé
In the present invention, a container crane comprises a travelling apparatus, a girder, a trolley, a splitter (10), an elevating mechanism, a laser scanner (22), and a crane control apparatus. The girder is supported by the travelling apparatus and extends in the horizontal direction. The trolley is capable of travelling along the girder. The splitter (10) is hung from the trolley and is capable of engaging and disengaging the container. The elevating mechanism moves the splitter (10) up and down. The laser scanner (22) is provided in the splitter (10) and emits laser light and obtains the coordinates of the point of incidence on an article of interest. The crane control apparatus controls the driving of the trolley and the splitter (10) based on the coordinates of the point of incidence obtained using the laser scanner (22).
B66C 13/22 - Systèmes ou dispositifs de commande pour entraînement électrique
B66C 13/08 - Dispositifs auxiliaires pour commander les mouvements des charges suspendues ou pour empêcher le câble de prendre du mou pour déposer les charges selon un orientement ou dans une position donnés
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Kobayashi Masato
Abrégé
In this container transfer method, containers (4) temporarily placed in a cargo handling area (10) by a carrier and containers (4) loaded in an external chassis are received, the containers (4) are carried and temporarily placed in a carrier transport path (37), and the containers (4) temporarily stored in the carrier transport path (37) are transported by a yard crane (32) and stored in a container storing block (30). In addition, containers (4) stored in the container storing block (30) are transported by the yard crane (32) and temporarily placed in the carrier transport path (37) so as to be receivable by the carrier, and the containers (4) are carried by the carrier and temporarily placed in the cargo handling area (10) as well as carried to the gate area (60) and loaded in an external chassis.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Yoshioka Nobuo
Abrégé
A hoisting device (20) for a grab bucket (2) is provided with an information acquiring unit (241) for acquiring the feed length and tension of a suspending rope (11) or the like. The hoisting control device (20) is provided with a closing rope control unit (246) for causing winding or the like on the basis of the feed length of a closing rope (12). The hoisting control device (20) is provided with a first winding control unit (247) for causing winding or the like on the basis of the feed length of the suspending rope (11) and a second winding control unit (248) for causing winding or the like on the basis of the tension of the suspending rope (11). The hoisting control device (20) is provided with a switching control unit (245) for switching control according to the tension of the suspending rope (11).
B66C 13/32 - Systèmes ou dispositifs de commande pour entraînement électrique pour actionner les treuils des auges de bennes preneuses au moyen d'un ou plusieurs moteurs électriques utilisés à la fois pour le levage et l'affalement des charges et pour l'ouverture et la fermeture des mâchoires de l'auge
B66C 19/00 - Ponts roulants ou portiques fixes ou mobiles, portant un chariot ou un treuil mobile
34.
SYSTEM OF VIBRATION-DAMPING CONTROL FOR CRANE AND METHOD OF VIBRATION-DAMPING CONTROL FOR CRANE
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Uchida, Koji
Kusano, Toshiyuki
Abrégé
The present invention is a system of vibration-damping control for a crane, which reduces the vibration of a support structure (20) during shaking of a crane (10) provided with a trolley (24) that moves over a girder (22) and boom (23) provided to a top side of the support structure, wherein the system is provided with: a vibration detection sensor (30) for detecting vibration; a trolley drive unit for driving during movement over the girder (22) and boom (23); a calculation unit for calculating a vibration speed of the support structure on the basis of a detection signal of the vibration detection sensor (30); a determination unit for determining, from a calculation signal of the calculation unit, whether vibration-damping control of the support structure (20) is necessary; and a command signal transmission unit for transmitting to the trolley drive unit a command signal for adjusting the moving speed of the trolley (24) when the determination unit has determined that vibration-damping control is necessary. The present invention thereby makes it possible to facilitate vibration-damping retrofitting and enable the shaking caused by strong winds or earthquakes of a wide range of frequencies and magnitudes to be dealt with.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Tanaka Kazunari
Yokoo Kazutoshi
Shintani Koji
Abrégé
A power supply control device (401) supplies electric power for performing vulcanization of a green tire in at least one vulcanizing unit that is provided in a vulcanizer (300) from a first power supply (100), which is capable of supplying electric power at all times, and a second power supply (200), which is capable of supplying stored electric power that has been stored in advance. The power supply control device (401) is provided with an information-acquiring unit (412) and an electric power supply control unit (413). The information-acquiring unit (412) acquires process information representing the types of processes included in the vulcanization process in a vulcanizing unit (301). The electric power supply control unit (413) supplies stored electric power from the second power supply (200) to the vulcanizing unit (300) during a previously determined process on the basis of the process information acquired by the information-acquiring unit (412).
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Fukuda Hideki
Morita Mitsuru
Harada Yukihisa
Abrégé
The tire vulcanizer is provided with: a support (13) equipped with a platen section (14); a guide member (31) equipped with a flange section (33) on an end, the flange section (33) being detachably supported by the rim of a through hole (25) formed in the platen section (14); and a bag head (37) that is slidably inserted in the guide member (31). The bag head (37) is provided with a regulating member (70) for abutting against the guide member (31) when the bag head is inserted into the guide member (31) to a previously set specified position to regulate displacement of the bag head (37) in the insertion direction. The regulating member (70) is installed detachably on the outer circumferential surface of the bag head (37) so as to protrude outward from the outer circumferential surface.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Ueda Tatsuya
Agawa Jiro
Abrégé
A device for measuring the electrical resistance of a tire (T), for measuring electrical resistance from a bead part (71) to a tread part (70), the device provided with a probe (5a) capable of curvedly deforming so as to follow the shape of a tire (T).
G01R 27/02 - Mesure de résistances, de réactances, d'impédances réelles ou complexes, ou autres caractéristiques bipolaires qui en dérivent, p. ex. constante de temps
B60C 19/00 - Autres structures ou éléments du pneumatique
G01N 27/04 - Recherche ou analyse des matériaux par l'emploi de moyens électriques, électrochimiques ou magnétiques en recherchant l'impédance en recherchant la résistance
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Shimotsu Toshihito
Abrégé
A support device is provided with coil receiving surfaces (10a, 10b) on which a hot coil is placed, base plates (7a, 7b) which are disposed below the coil receiving surfaces (10a, 10b), and heat insulating bodies (12) which are disposed between the base plates (7a, 7b) and the coil receiving surfaces (10a, 10b) and which block the transfer of heat from the coil receiving surfaces (10a, 10b) to the base plates (7a, 7b). Each of the base plates (7a, 7b) and/or the corresponding one of the coil receiving surfaces (10a, 10b) has a contact section (15) which forms a space between each edge (12b) of the heat insulating body (12) and the base plate (7a, 7b) and/or the coil receiving surface (10a, 10b) and which is in contact with the region of the heat insulating body (12) which is closer to the center of the heat insulating body (12) than the edges (12b).
B61D 3/16 - Wagons de marchandises découverts ou fourgons adaptés au transport de chargements particuliers
B21C 47/24 - Manipulation des matériaux enroulés, pour les transférer vers les appareils à enrouler, les sortir de ces appareils, les mettre en position de fonctionnement dans ces appareils, ou les retirer de cette positionMoyens pour empêcher le déroulement pendant le transport
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Yanai Noritaka
Monzen Tadaaki
Hayashi Daisaku
Abrégé
This center of gravity position detection device calculates the center of gravity position of a suspended load suspended by a rope, and is provided with a measured value acquisition unit which, for at least two different states, acquires measured values from data indicating the state in which the suspended load is suspended, and a center of gravity position calculation unit which calculates the center of gravity position of the suspended load on the basis of a state model of the suspended load which includes at least the center of gravity position of the suspended load as an unknown variable and the measured values acquired by the measured value acquisition unit.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Ozaki Kazuki
Morita Katsuaki
Toyohara Takashi
Yoshioka Nobuo
Furukawa Yuki
Abrégé
This power supply apparatus that supplies power to an electric load is provided with: a power conversion apparatus, which converts alternating current power to direct current power at a first target voltage value, said alternating current power having been supplied from a power supply, and which supplies the direct current power to the electric load; a chargeable/dischargeable electric storage apparatus connected to the power conversion apparatus, said electric storage apparatus being connected parallel to the electric load; a charge/discharge control apparatus that controls charging and discharging such that the voltage value of the electric storage apparatus is at a second target voltage value; and a target voltage value setting section, which compares the charge rate of the electric storage apparatus with a threshold value, and which increases/reduces the first target voltage value and/or the second target voltage value corresponding to comparison results.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Monzen Tadaaki
Yanai Noritaka
Hayashi Daisaku
Abrégé
This gravity center position detection device (100) obtains the position of the center of gravity of a load suspended by a crane from a rope support position using a rope. The gravity center position detection device (100) is provided with: a distance calculation unit (103) for calculating the distance between the rope support position and the center of gravity of the suspended load; and a gravity center height calculation unit (105) for calculating the height, within the suspended load, of the center of gravity of the suspended load by subtracting the distance between the rope support position and the upper surface of the suspended load from the distance between the rope support position and the center of gravity of the suspended load.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Matsunaga Kunio
Tachibana Makoto
Abrégé
This tire holding apparatus holds a tire by means of an annular rim attached in such a manner as to be detachable, and is provided with: a body part having a support surface for supporting the rim; an inflation gas supply part that has an inflation flow passage that leads from inside the body part to the center of the rim, and supplies inflation gas to the inside of the tire supported by the rim; and clamp part that is attached to the body part, and uses the pressure of the inflation gas, which flows through the inflation flow passage, as a driving force to clamp the rim to the support surface of the body part.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Fujisawa Noboru
Hayashi Daisaku
Abrégé
A drive device is provided with: a plurality of motors; a plurality of inverters, one of which is provided to each motor, that are capable of outputting in accordance with a plurality of inputted parameters; a state detection unit that detects the state of the inverters and the motors; and a control unit that controls the inverters. The control unit has: an operation detection unit that detects operational inverters and motors on the basis of the detection results of the state detection unit; and a parameter determination unit that determines the parameters to be set on the basis of the number of operational inverters and motors detected by the operation detection unit, and outputs the result to the inverters.
H02P 5/74 - Dispositions spécialement adaptées à la régulation ou la commande de la vitesse ou du couple d’au moins deux moteurs électriques pour commander au moins deux moteurs dynamo-électriques à courant alternatif
B66C 13/22 - Systèmes ou dispositifs de commande pour entraînement électrique
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Agawa Jiro
Moribe Takashi
Hanada Shuichi
Tatemi Hiroki
Takahashi Kazuhito
Abrégé
Provided is a kneading machine capable of reducing cost by making a drop-door-holding mechanism smaller, while reducing the force pressing against the drop door. The kneading machine is characterized by being provided with: a chamber; a kneading rotor that kneads rubber introduced into the chamber, and is positioned in the chamber; a drop door capable of closing the lower part of the chamber, rotatably attached to the chamber, and capable of opening the lower part of the chamber; a linking mechanism configured in a manner such that a plurality of linking members are rotatably connected to one another, having one end of one linking member rotatably positioned on the bottom surface of the chamber, and capable of putting a contact surface positioned on the other end of the one linking member into contact with a surface to be contacted on the drop door, by moving in a substantially perpendicular direction in relation to the surface to be contacted, as a result of the rotation of the one end of the linking member; and a rotating part for rotating the linking mechanism.
B29B 7/26 - Éléments constitutifs, détails ou accessoiresOpérations auxiliaires pour déchargement, p. ex. portes
B29B 7/10 - MélangeMalaxage discontinu, avec dispositifs mécaniques de mélange ou de malaxage, c.-à-d. de type travaillant par charges avec dispositifs de mélange ou de malaxage mobiles rotatifs
B29K 21/00 - Utilisation de caoutchouc non spécifié ou élastomères non spécifiés comme matière de moulage
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Tachibana Makoto
Agawa Jiro
Imamura Morihiro
Ueda Tatsuya
Miyamoto Yoshinori
Abrégé
This tire testing device enables attachment and detachment of a rim assembly formed by integrating a first rim and a second rim thereto and therefrom and tests a tire attached to the rim assembly. The tire testing device is provided with: a first attachment part which holds the first rim; a second attachment part which holds the second rim; a rotation part which rotates the first attachment part about a reference axis orthogonal to a first reference plane of the first rim attached to the first attachment part; a fixing part which is capable of fixing the first attachment part and the second attachment part to each other and releasing the fixation; an attachment movement part which adjusts the distance in the direction along the reference axis between the first attachment part and the second attachment part; and a rotation restriction part which restricts the rotation about the reference axis of the second attachment part.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Iwamoto Tomoyuki
Matsunaga Kunio
Shintani Koji
Hineno Yoshikatsu
Abrégé
Provided is a tire vulcanizing machine which, while being smaller, lighter, and simpler, reduces stress when the teeth are engaged and can suppress damage to the teeth. This tire vulcanizing machine is characterized by being provided with an upper mold attachment member (21) to which an upper mold is attached, a lower mold attachment member to which is attached a lower mold assembled to the upper mold, a support member (5) which supports the upper mold attachment member (21) and the lower mold attachment member, a fixed-side rack (6) provided on the support member (5) and having first teeth (6a) arrayed in the height direction in which the upper mold and the lower mold are assembled together, a movable-side rack (7) provided on the upper mold attachment member (21) and having second teeth (7a) which mesh with the first teeth (6a) of the fixed-side rack (6), and a tilt restricting portion (40) which restricts the movable rack (7) from tilting with respect to the height direction.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Fukuda Hideki
Yusa Joji
Abrégé
Provided are a tire vulcanization machine and a tire vulcanization facility that can increase production efficiency and reduce the time taken by loading and unloading a tire. The present invention is provided with: a lower die support that supports a lower die; an upper die support that supports an upper die; a moving mechanism that moves the upper die support in the front-back direction; a raising/lowering mechanism that moves the upper die supported by the upper die support in the vertical direction; a lift mechanism that, in the state of the upper die being retracted to above the lower die by means of the raising/lowering mechanism, pushes up a tire (T2) for which vulcanization is complete held in the lower die; and a tire support (25) that is supported by the upper die support and can move between a support position that supports the bottom side of the tire (T2) at the outer peripheral side of the position of pushing up by the lift mechanism and a retracted position positioned to the outer peripheral side of the tire (T2).
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Tanaka Kazunari
Mori Ryutaro
Moribe Takashi
Abrégé
A kneading rotor and a kneader comprise: a rotor shaft which is a pipe-shaped member and which has a kneading blade section provided on the outer peripheral surface of the rotor shaft, the blade section having a solid structure having no space therein; and a helical pipe which is inserted within the rotor shaft and which is formed by helically disposing a flow pipe, through the inside of which a cooling medium flows to cool the rotor shaft. The helical pipe is disposed so as to be in contact with the inner peripheral surface of the rotor shaft.
B29B 7/18 - MélangeMalaxage discontinu, avec dispositifs mécaniques de mélange ou de malaxage, c.-à-d. de type travaillant par charges avec dispositifs de mélange ou de malaxage mobiles rotatifs avec plus d'un arbre
B01F 7/08 - Mélangeurs à agitateurs tournant dans des récipients fixes; Pétrins avec agitateurs tournant autour d'un axe horizontal ou incliné à vis sans fin
B01F 15/06 - Systèmes de chauffage ou de refroidissement
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Tanaka Kazunari
Mori Ryutaro
Moribe Takashi
Abrégé
A kneading rotor (20) and a kneader (10) are provided with: a rotor shaft (27) formed as a tube-shaped member and having a kneading blade section (22) provided on the outer peripheral surface of the rotor shaft (27); an insertion member (29) inserted within the rotor shaft (27) and forming a cooling conduit (28) between the insertion member (29) and the rotor shaft (27), the cooling conduit (28) allowing a cooling medium (1) to flow therethrough; and stirring blades (36, 37) provided either to the inner peripheral surface of the rotor shaft (27) and/or to the insertion member (29) so as to protrude into the cooling conduit (28) and stirring the cooling medium (1), which flows through the cooling conduit (28), by rotating together with the inner peripheral surface of the rotor shaft (27) or with the insertion member (29).
B29B 7/18 - MélangeMalaxage discontinu, avec dispositifs mécaniques de mélange ou de malaxage, c.-à-d. de type travaillant par charges avec dispositifs de mélange ou de malaxage mobiles rotatifs avec plus d'un arbre
B01F 7/04 - Mélangeurs à agitateurs tournant dans des récipients fixes; Pétrins avec agitateurs tournant autour d'un axe horizontal ou incliné à pales ou à bras
B01F 15/06 - Systèmes de chauffage ou de refroidissement
50.
ROTOR FOR KNEADING, KNEADING MACHINE, AND METHOD FOR MANUFACTURING ROTOR FOR KNEADING
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Mori Ryutaro
Tanaka Kazunari
Moribe Takashi
Abrégé
This rotor for kneading is provided with: a rotor shaft (27) having a tubular shape; blade parts (22) provided on the outside surface of the rotor shaft (27); and a filling body (36) which is provided in a recessed part (28), which is formed inside of the blade parts (22), and is made of material having a higher thermal conductivity than the material forming the rotor shaft (27) and the blade parts (22).
B01F 15/06 - Systèmes de chauffage ou de refroidissement
B01F 7/08 - Mélangeurs à agitateurs tournant dans des récipients fixes; Pétrins avec agitateurs tournant autour d'un axe horizontal ou incliné à vis sans fin
B29B 7/22 - Éléments constitutifs, détails ou accessoiresOpérations auxiliaires
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Tachibana Makoto
Agawa Jiro
Imamura Morihiro
Ueda Tatsuya
Miyamoto Yoshinori
Abrégé
This tire testing device is provided with: a bottom rim at which are formed a bottom through hole and a rim-side inclined surface that expands in diameter in the downward direction of the inner peripheral surface of the bottom end of the bottom through hole; a top rim held facing the bottom rim; a threading section that can be threaded through the bottom through hole; and a device-side inclined surface that is provided to the bottom end of the threading section and that can contact the rim-side inclined surface, expanding in diameter from the outer peripheral surface of the threading section in the downwards direction.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Tachibana Makoto
Agawa Jiro
Imamura Morihiro
Ueda Tatsuya
Miyamoto Yoshinori
Abrégé
Provided is a rim replacement device that is for a tire testing machine and that, while having a simple and space-conserving configuration, can without difficulty rotate a turntable having a plurality of rim-carrying sections, and can favorably identify a plurality of rim assemblies set at the turntable. In the present invention, a turntable (55) is provided to a support section rotatably around a rotational axis, a plurality of rim-carrying sections (56) at which rim assemblies are disposed are provided around the rotational axis of the turntable (55), and a reading unit is attached to the support section below the turntable (55). Also, through the turntable (55), the reading unit reads rim identification information of the rim assemblies carried at the rim-carrying sections (56) at a predetermined reading position. As a result, it is possible to favorably read the identification information of the rim assemblies without hindering the rotation of the turntable (55).
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Tachibana Makoto
Agawa Jiro
Imamura Morihiro
Ueda Tatsuya
Miyamoto Yoshinori
Abrégé
This rim assembly is provided with: a first rim at which a first reference surface is formed; a second rim at which a second reference surface is formed; a through hole that extends in a manner so as to intersect the first reference surface at the first rim and through which a threading section is threaded; a pin that is provided upright at one of either the first reference surface or the second reference surface; a protrusion formed at the other of either the first reference surface or the second reference surface; a first support member provided to the first reference surface; and a second support member provided to the second reference surface. A groove that the protrusion engages is formed around the outer peripheral surface of the pin. The first support member and the second support member contact when the protrusion is separated from the groove, and the first support member and the second support member separate when the protrusion is engaged to the groove.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Mori Ryutaro
Tanaka Kazunari
Moribe Takashi
Abrégé
This kneading rotor is provided with: a tube-like rotor shaft (16) having kneading wings (6) provided on the outer peripheral surface thereof; an insertion member (18) inserted in the rotor shaft (16); and a cooling medium conduit (25) provided between the outer peripheral surface (19) of the insertion member (18) and the inner peripheral surface (21) of the rotor shaft (16) and allowing a cooling medium to flow therethrough. The cooling medium conduit (25) is helically disposed about the axis (L) of the inner peripheral surface (21) of the rotor shaft (16).
B01F 7/08 - Mélangeurs à agitateurs tournant dans des récipients fixes; Pétrins avec agitateurs tournant autour d'un axe horizontal ou incliné à vis sans fin
B01F 15/06 - Systèmes de chauffage ou de refroidissement
B29B 7/10 - MélangeMalaxage discontinu, avec dispositifs mécaniques de mélange ou de malaxage, c.-à-d. de type travaillant par charges avec dispositifs de mélange ou de malaxage mobiles rotatifs
B29B 7/22 - Éléments constitutifs, détails ou accessoiresOpérations auxiliaires
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Fujisawa, Noboru
Iwamoto, Nobuhito
Kimoto, Kenichi
Abrégé
The purpose of the invention is to provide a continuous unloader making it possible to accurately ascertain movement of a ship during loading and unloading and to reduce the load applied to the continuous unloader from the ship. The continuous unloader (1) is provided with: an excavating means having buckets (3) for excavating a bulk loaded into the hold of a ship (6), an endless chain whereby a plurality of the buckets (3) are connected, and a drive unit for driving the endless chain; a laser rangefinder (15), shake detection camera (16), and shake detection target (17) for detecting swaying of the ship (6); and a display means for visually displaying the detected swaying.
B65G 67/60 - Chargement ou déchargement des navires
B65G 65/06 - Machines à charger ou à décharger comportant essentiellement un transporteur pour déplacer les charges associé à un dispositif pour les saisir avec transporteurs de prise sans fin munis de raclettes ou de moyens de levage
56.
CRANE, CONTROL METHOD OF SAME, AND CONTROL PROGRAM
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Fujisawa, Noboru
Suma, Yasutaka
Abrégé
An inverter for a crane is rapidly stopped and rapidly separated from a circuit in the event of an anomaly. Provided are a motor (11), an inverter (12) provided correspondingly with respect to the motor (11), a converter (13) for converting AC power supplied by an AC power supply to DC power and supplying DC power to the inverter (12), a power consumption unit (21) connected between the converter (13) and the inverter (12) for consuming DC power from the converter (13), and a first switching unit (MC1) connected between the power consumption unit (21) and the converter (13) for switching between connection and separation of the power consumption unit (21) and the converter (13).
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Ozaki Kazuki
Morita Katsuaki
Yoshioka Nobuo
Toyohara Takashi
Abrégé
In the present invention, a sequencer compares the value of a current output by a secondary cell and a threshold value established beforehand, and determines whether to increase the power supplied by an AC/DC converter.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Ozaki Kazuki
Morita Katsuaki
Yoshioka Nobuo
Toyohara Takashi
Abrégé
A sequencer compares the electrical energy charged to a secondary battery with a threshold value and determines whether or not to stop charging or discharging the secondary battery, the threshold value being preset based on the electrical energy of regenerative power that can be generated in a suspending mechanism. This makes it possible to prevent the secondary battery from being overcharged or overdischarged and efficiently operate the secondary battery.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Ueda, Tatsuya
Tachibana, Makoto
Abrégé
The purpose of the present invention is to provide a rim assembly to which a small-size tire can be mounted, a tire testing machine, and a rim assembly replacing method. A rim assembly has a pair of an upper rim and a lower rim, the pair allowing a tire to be tested to be mounted thereon. The rim assembly comprises: a pin (6) provided to the lower rim; a pin receiving section (3) provided to the upper rim and capable of engaging with the pin (6); and a groove section formed in the lower rim-side surface of the upper rim and having formed therein a groove (28a) having a recessed cross-sectional shape which enables the groove (28a) to receive at least a part of the tip of the pin (6).
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Yoshioka, Nobuo
Morita, Katsuaki
Toyohara, Takashi
Abrégé
For the purpose of supplying power to the power load of a crane, a power supply device (40) is provided with a chargeable battery (42) which is mounted on the crane and which supplies direct current power to the power load by being connected to the power load via a direct current bus line (52). The power supply device (40) converts, by means of a PWM converter (41), an alternating current power supplied from a commercial power source into a direct current power that has a first voltage target value as the voltage and has a maximum power target value as an upper limit, supplies the direct current power to the power load via the direct current bus line (52), and charges and discharges the battery (42) at a voltage of a second voltage target value that is smaller than the first voltage target value by means of a battery charge/discharge control device (48).
H02J 1/10 - Fonctionnement de sources à courant continu en parallèle
B66C 13/12 - Aménagements des moyens pour transmettre une puissance pneumatique, hydraulique ou électrique à des parties ou dispositifs mobiles
B66C 19/00 - Ponts roulants ou portiques fixes ou mobiles, portant un chariot ou un treuil mobile
H02J 9/06 - Circuits pour alimentation de puissance de secours ou de réserve, p. ex. pour éclairage de secours dans lesquels le système de distribution est déconnecté de la source normale et connecté à une source de réserve avec commutation automatique
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Agawa, Jiro
Abrégé
The objective is to provide a tire vulcanizer capable of securing the position of an upper die attachment member or a lower die attachment member, while the height of the upper die attachment member or the lower die attachment member is adjusted with a simple structure. A tire vulcanizer (2) is provided with: a guide frame (5) to support an upper die attachment member (21) and a base frame (26); a securing side rack (6) comprising a plurality of teeth and provided on the guide frame (5) in the height direction of a die (23) comprising an upper die (4) set on the upper die attachment member (21) and a lower die (35) set on the base frame (26); a movable side rack (7) provided on the upper die attachment member (21) and comprising a plurality of teeth which mesh with the securing side rack (6); and an air cylinder to move the movable side rack (7) in the height direction of the die (23) relative to the upper die attachment member (21) while the height of the upper die attachment member (21) is maintained to be constant.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Matsunaga, Kunio
Tomoto, Keiichi
Morita, Mitsuru
Abrégé
The purpose of the present invention is to provide a tire vulcanizer and a transporting and packaging method of the same which are capable of, even in the case where a total height direction size of the vulcanizer exceeds a limited size of a domestic transport and an export package, transporting and packaging the tire vulcanizer with the limitation is easily cleared. The tire vulcanizer is provided with tie rods (8A, 8B) which are extended upward from a base plate, receive a pressurization reaction force applied to a bolster plate and an upper die at the time of the tire vulcanization, and guide lifting and lowering of the bolster plate and the upper die at the time of opening and closing the upper die. In the tire vulcanizer, the tie rods (8A, 8B) can be divided into two or more vertically on a length direction position thereof.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Tatemi, Hiroki
Morita, Mitsuru
Hanada, Shuichi
Moribe, Takashi
Takahashi, Kazuhito
Nishihara, Yoshikazu
Urakami, Yoshihito
Abrégé
Provided is a kneading device configured so that, independent of the movement of a floating weight and other operating conditions, a hydraulic cylinder is operated smoothly and damage to the hydraulic cylinder is prevented. The present kneading device (1) is provided with: a body section (12) having a kneading chamber (5) therein; a floating weight (15) for pressing a material within the kneading chamber (5); a shaft member (14) having one end affixed to the floating weight (15) and capable of moving in the axial direction; a connecting beam (7) connected at the intermediate section thereof to the other end side of the shaft member (14); a cylinder (3) for moving the connecting beam (7) in the direction of the axis of the shaft member (14), the cylinder (3) being connected on one end side thereof to the end section side of the connecting beam (7) and also being connected on the other end side thereof to the body section (12); and a first connection section (9) provided at the portion of the connection between the connecting beam (7) and the cylinder (3) and capable of rotating the cylinder (3) at the connection portion about at least two axes.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Yoshioka, Nobuo
Shimotsu, Toshihito
Sakamoto, Toshihiko
Morita, Katsuaki
Toyohara, Takashi
Abrégé
Provided is a crane power-feed cable reel device that can feed power to a crane regardless of where a power supply is installed. Said device is provided with: a cable reel (35) around which a power-feed cable (33) is wound, said power-feed cable running from a power-feed box installed on the ground; a connector used when supplying power to the crane from the power-feed cable (33) wound around the cable reel (35); and a connection mount (51) on which the cable reel (35) and connector are mounted, said connection mount being removably attachable to the crane. An opening (59) into which a protruding beam (13) can be inserted is formed in the connection mount (51), said protruding beam protruding outwards from a leg (11) of the crane with respect to the direction of travel.
MITSUBISHI HEAVY INDUSTRIES MACHINERY TECHNOLOGY CORPORATION (Japon)
Inventeur(s)
Morita Katsuaki
Yoshioka Nobuo
Toyohara Takashi
Abrégé
A battery deterioration detection device of the present invention is characterized by being provided with an internal resistance value calculation unit which acquires a current value inputted to and outputted from a storage battery and a voltage value applied to the storage battery, and calculates the present internal resistance value of the storage battery using the fluctuation range of the current value when the current value fluctuates by a given value or more and the fluctuation range of the voltage value at that time, and a battery deterioration information processing unit which calculates the deterioration rate of the storage battery at the present temperature of the storage battery by dividing the present internal resistance value by an internal resistance initial value corresponding to the present temperature of the storage battery, and outputs the deterioration rate to a monitor device.
G01R 31/36 - Dispositions pour le test, la mesure ou la surveillance de l’état électrique d’accumulateurs ou de batteries, p. ex. de la capacité ou de l’état de charge