09 - Appareils et instruments scientifiques et électriques
Produits et services
Rapidly solidified alloys of metals; amorphous alloys of
metals; brazing metal. Electrical transformers; magnetic cores; electric power
distribution machines.
09 - Appareils et instruments scientifiques et électriques
Produits et services
(1) Rapidly solidified alloys of metals; amorphous alloys of metals; brazing metal.
(2) Electrical transformers; magnetic cores; electric power distribution machines.
09 - Appareils et instruments scientifiques et électriques
Produits et services
Rapidly solidified alloys of metals being metal alloys for further manufacturing; amorphous alloys of metals being metal alloys for further manufacturing; brazing alloys Electrical transformers; magnetic cores; electric power distribution machines
8.
Process For In-Line Mechanically Scribing Of Amorphous Foil For Magnetic Domain Alignment And Core Loss Reduction
The invention relates to the reduction of core losses in soft magnetic applications utilizing amorphous foil as the core material. Amorphous foil is known to have lower losses when compared to crystalline silicon steel laminations. It is found that a reduction of 10-40% of losses can be achieved over the current state of the art amorphous material by mechanical scribing of the surface of the soft magnetic laminations comprising the wound core in power conditioning devices such as a transformer. The scribing process introduces control of the magnetic domains causing ease of magnetic flux reversal.
B22D 11/114 - Traitement du métal liquide en utilisant des moyens agitateurs ou vibrants
B22D 11/00 - Coulée continue des métaux, c.-à-d. en longueur indéfinie
B22D 11/06 - Coulée continue des métaux, c.-à-d. en longueur indéfinie dans des moules dont les parois se déplacent, p. ex. entre des rouleaux, des plaques, des courroies, des chenilles
H01F 1/147 - Alliages caractérisés par leur composition
H01F 1/153 - Alliages métalliques amorphes, p. ex. métaux vitreux
9.
Process for in-line mechanically scribing of amorphous foil for magnetic domain alignment and core loss reduction
The invention relates to the reduction of core losses in soft magnetic applications utilizing amorphous foil as the core material. Amorphous foil is known to have lower losses when compared to crystalline silicon steel laminations. It is found that a reduction of 10-40% of losses can be achieved over the current state of the art amorphous material by mechanical scribing of the surface of the soft magnetic laminations comprising the wound core in power conditioning devices such as a transformer. The scribing process introduces control of the magnetic domains causing ease of magnetic flux reversal
B22D 11/114 - Traitement du métal liquide en utilisant des moyens agitateurs ou vibrants
B22D 11/00 - Coulée continue des métaux, c.-à-d. en longueur indéfinie
B22D 11/06 - Coulée continue des métaux, c.-à-d. en longueur indéfinie dans des moules dont les parois se déplacent, p. ex. entre des rouleaux, des plaques, des courroies, des chenilles
H01F 1/147 - Alliages caractérisés par leur composition
H01F 1/153 - Alliages métalliques amorphes, p. ex. métaux vitreux
10.
PROCESS FOR IN-LINE MECHANICALLY SCRIBING OF AMORPHOUS FOIL FOR MAGNETIC DOMAIN ALIGNMENT AND CORE LOSS REDUCTION
The invention relates to the reduction of core losses in soft magnetic applications utilizing amorphous foil as the core material. Amorphous foil is known to have lower losses when compared to crystalline silicon steel laminations. It is found that a reduction of 10-40% of losses can be achieved over the current state of the art amorphous material by mechanical scribing of the surface of the soft magnetic laminations comprising the wound core in power conditioning devices such as a transformer. The scribing process introduces control of the magnetic domains causing ease of magnetic flux reversal.
B22D 11/00 - Coulée continue des métaux, c.-à-d. en longueur indéfinie
B22D 11/06 - Coulée continue des métaux, c.-à-d. en longueur indéfinie dans des moules dont les parois se déplacent, p. ex. entre des rouleaux, des plaques, des courroies, des chenilles
A method of producing an amorphous alloy ribbon having a composition of Fe100-a-bBaSibCc (13.0 atom %≤a≤16.0 atom %, 2.5 atom %≤b≤5.0 atom %, 0.20 atom %≤c≤0.35 atom %, and 79.0 atom %≤(100-a-b)≤83.0 atom %) includes: preparing an alloy ribbon; and, in a state in which the alloy ribbon is tensioned with a tensile stress of from 5 MPa to 100 MPa, increasing a temperature of the alloy ribbon to from 410° C. to 480° C., at an average temperature increase rate of from 50° C./sec to less than 800° C./sec, and decreasing a temperature of the thus heated alloy ribbon to a temperature of a heat transfer medium for temperature-decreasing, at an average temperature decrease rate of from 120° C./sec to less than 600° C./sec, wherein the temperature increase and decrease are performed by contacting the traveling alloy ribbon with a heat transfer medium.
C21D 9/52 - Traitement thermique, p. ex. recuit, durcissement, trempe ou revenu, adapté à des objets particuliersFours à cet effet pour fils métalliquesTraitement thermique, p. ex. recuit, durcissement, trempe ou revenu, adapté à des objets particuliersFours à cet effet pour bandes métalliques
C21D 6/00 - Traitement thermique des alliages ferreux
A magnetic piece, a multilayer magnetic piece and a multilayer core with an adhesive agent of excellent saturation magnetic flux density are provided. The magnetic piece includes a soft magnetic amorphous alloy ribbon 1 and a resin layer 2 provided on at least one surface of the soft magnetic amorphous alloy ribbon. The resin layer contains a resin whose Shore D hardness is not more than 60. The resin may have a Shore D hardness of not more than 25 or may have a Shore D hardness of not less than 1.
B32B 15/04 - Produits stratifiés composés essentiellement de métal comprenant un métal comme seul composant ou comme composant principal d'une couche adjacente à une autre couche d'une substance spécifique
H01F 1/153 - Alliages métalliques amorphes, p. ex. métaux vitreux
H01F 41/02 - Appareils ou procédés spécialement adaptés à la fabrication ou à l'assemblage des aimants, des inductances ou des transformateursAppareils ou procédés spécialement adaptés à la fabrication des matériaux caractérisés par leurs propriétés magnétiques pour la fabrication de noyaux, bobines ou aimants
B32B 7/12 - Liaison entre couches utilisant des adhésifs interposés ou des matériaux interposés ayant des propriétés adhésives
B32B 15/18 - Produits stratifiés composés essentiellement de métal comportant du fer ou de l'acier
C22C 45/02 - Alliages amorphes avec le fer comme constituant majeur
13.
MAGNETIC MATERIAL, LAMINATED MAGNETIC MATERIAL, LAMINATED PACKET, AND LAMINATED CORE USING MAGNETIC MATERIAL, AND MAGNETIC MATERIAL PRODUCING METHOD
Provided are a magnetic material, a laminated magnetic material, and a laminated core to which an adhesive agent having an excellent saturation magnetic flux density is applied. The magnetic material includes: a soft magnetic amorphous alloy ribbon 1; and a resin layer 2 disposed on at least one surface of the soft magnetic amorphous alloy ribbon, wherein the resin layer includes a resin having a Shore D hardness not greater than 60. The resin may have a Shore D hardness not greater than 25, and may have a Shore D hardness not less than 1.
H01F 1/153 - Alliages métalliques amorphes, p. ex. métaux vitreux
B32B 15/08 - Produits stratifiés composés essentiellement de métal comprenant un métal comme seul composant ou comme composant principal d'une couche adjacente à une autre couche d'une substance spécifique de résine synthétique
H01F 1/18 - Aimants ou corps magnétiques, caractérisés par les matériaux magnétiques appropriésEmploi de matériaux spécifiés pour leurs propriétés magnétiques en matériaux inorganiques caractérisés par leur coercivité en matériaux magnétiques doux métaux ou alliages sous forme de feuilles avec revêtement isolant
H01F 27/245 - Noyaux magnétiques fabriqués à partir de tôles, p. ex. à grains orientés
H01F 41/02 - Appareils ou procédés spécialement adaptés à la fabrication ou à l'assemblage des aimants, des inductances ou des transformateursAppareils ou procédés spécialement adaptés à la fabrication des matériaux caractérisés par leurs propriétés magnétiques pour la fabrication de noyaux, bobines ou aimants
14.
Multilayer block core, multilayer block, and method for producing multilayer block
d Composition Formula (A)
In Composition Formula (A), each of a, b, c, and d is an atomic percent; the expressions 13.0≤a≤17.0, 3.5≤b≤5.0, 0.6≤c≤1.1, and 0≤d≤0.5 are satisfied; and M represents at least one element selected from the group consisting of Ti, Zr, Hf, V, Nb, Ta, Cr, Mo, and W.
H01F 41/02 - Appareils ou procédés spécialement adaptés à la fabrication ou à l'assemblage des aimants, des inductances ou des transformateursAppareils ou procédés spécialement adaptés à la fabrication des matériaux caractérisés par leurs propriétés magnétiques pour la fabrication de noyaux, bobines ou aimants
100-a-babcc (where a and b represent atomic ratios in the composition, c represents the atomic ratio of C to 100.0 atom% of the total amount of Fe, Si, and B, 13.0 atom%≤a≤16.0 atom%, 2.5 atom%≤b≤5.0 atom%, 0.20 atom%≤c≤0.35 atom%, and 79.0 atom%≤100-a-b≤83.0 atom%).
100-a-babcc, is cuttable, and has an iron loss at a frequency of 50 Hz and a magnetic flux density of 1.3 T of not more than 0.3 W/kg. a and b represent atomic ratios in the composition, and respectively satisfy 13.0 atom%≤a≤16.0 atom%, and 2.5 atom%≤b≤5.0 atom%. c represents the atomic ratio of C to 100.0 atom% of the total amount of Fe, Si, and B, and satisfies 0.20 atom%≤c≤0.35 atom%.
H01F 27/25 - Noyaux magnétiques fabriqués à partir de bandes ou de feuillards
B22D 11/00 - Coulée continue des métaux, c.-à-d. en longueur indéfinie
C21D 6/00 - Traitement thermique des alliages ferreux
C22C 38/00 - Alliages ferreux, p. ex. aciers alliés
C22C 45/02 - Alliages amorphes avec le fer comme constituant majeur
H01F 1/153 - Alliages métalliques amorphes, p. ex. métaux vitreux
H01F 41/02 - Appareils ou procédés spécialement adaptés à la fabrication ou à l'assemblage des aimants, des inductances ou des transformateursAppareils ou procédés spécialement adaptés à la fabrication des matériaux caractérisés par leurs propriétés magnétiques pour la fabrication de noyaux, bobines ou aimants
17.
AMORPHOUS ALLOY RIBBON AND METHOD FOR MANUFACTURING SAME
100-a-babcc(a, b: atomic ratios in the composition, c: the atomic ratio of C with respect to a total amount of 100.0 atom% of Fe, Si, and B, wherein 13.0 atom% ≤ a ≤ 16.0 atom%, 2.5 atom% ≤ b ≤ 5.0 atom%, 0.20 atom% ≤ c ≤ 0.35 atom %, and 79.0 atom% ≤ 100-a-b ≤ 83.0 atom%).
An apparatus for annealing alloy ribbon, the apparatus comprising: an unwinder unwinding an alloy ribbon from a spool of the alloy ribbon; a heating member comprising a first flat surface, on which the alloy ribbon unwound by the unwinder runs while contacting the first flat surface, the heating member heating the alloy ribbon running while contacting the first flat surface through the first flat surface; a cooling member comprising a second flat surface, on which the alloy ribbon heated by the heating member runs while contacting the second flat surface, the cooling member cooling the alloy ribbon running while contacting the second flat surface through the second flat surface; and a winder winding the alloy ribbon cooled by the cooling member.
According to one embodiment of the present invention, a magnetic core and a magnetic core piece are provided, the magnetic core having a plurality of magnetic core blocks constituting a closed magnetic path, and the magnetic block being a laminate of a plurality of magnetic core pieces. The magnetic core piece includes: a laminated structure in which a plurality of amorphous thin strip pieces are laminated; and an electromagnetic steel plate disposed on at least one end surface of the laminated structure in the lamination direction. The laminated structure and the electromagnetic steel plate are fixed at a lamination surface.
This method for producing a nanocrystalline alloy ribbon includes obtaining a nanocrystalline alloy ribbon by bringing a partial area of an amorphous alloy ribbon that travels continuously while a tension F is applied thereto and that has a composition represented by Fe100-a-b-c-dBaSibCucMd (wherein each of a, b, c, and d is an atomic percent, the expressions 0 < a, 0 < b, 0 < c, 0 ≤ d, and 78 ≤ 100 - a - b - c - d are satisfied, and M represents Mo, Nb, or the like) into contact with the surface of a heat transfer medium maintained at a temperature of 450°C or more under conditions satisfying tc > 4/σ (wherein tc represents the time (seconds) from the time at which an arbitrary point on the amorphous alloy ribbon is brought into contact with the heat transfer medium to the time at which the arbitrary point separates from the heat transfer medium, and σ represents the calculated value of the contact pressure (kPa) between the amorphous alloy ribbon and the heat transfer medium).
C22C 45/02 - Alliages amorphes avec le fer comme constituant majeur
H01F 1/153 - Alliages métalliques amorphes, p. ex. métaux vitreux
H01F 41/02 - Appareils ou procédés spécialement adaptés à la fabrication ou à l'assemblage des aimants, des inductances ou des transformateursAppareils ou procédés spécialement adaptés à la fabrication des matériaux caractérisés par leurs propriétés magnétiques pour la fabrication de noyaux, bobines ou aimants
21.
MULTILAYER BLOCK CORE, MULTILAYER BLOCK, AND METHOD FOR PRODUCING MULTILAYER BLOCK
A multilayer block core is provided with a multilayer block in which nanocrystalline alloy ribbon pieces are layered, said nanocrystalline alloy ribbon pieces having a composition represented by Fe100-a-b-c-dBaSibCucMd (wherein each of a, b, c, and d is an atomic percent, the expressions 13.0 ≤ a ≤ 17.0, 3.5 ≤ b ≤ 5.0, 0.6 ≤ c ≤ 1.1, and 0 ≤ d ≤ 0.5 are satisfied, and M represents at least one element selected from the group consisting of Ti, Zr, Hf, V, Nb, Ta, Cr, Mo, and W).
H01F 1/153 - Alliages métalliques amorphes, p. ex. métaux vitreux
H01F 41/02 - Appareils ou procédés spécialement adaptés à la fabrication ou à l'assemblage des aimants, des inductances ou des transformateursAppareils ou procédés spécialement adaptés à la fabrication des matériaux caractérisés par leurs propriétés magnétiques pour la fabrication de noyaux, bobines ou aimants
22.
Wide iron-based amorphous alloy, precursor to nanocrystalline alloy
wherein M is Co and/or Ni, M′ is at least one element selected from the group consisting of Nb, W, Ta, Zr, Hf, Ti and Mo, M″ is at least one element selected from the group consisting of V, Cr, Mn, Al, elements in the platinum group, Sc, Y, rare earth elements, Au, Zn, Sn and Re, X is at least one element selected from the group consisting of C, Ge, P, Ga, Sb, In, Be and As, and a, x, y, z, p, q and r respectively satisfy 0≤a≤0.5, 0.1≤x≤3, 0≤y≤30, 1≤z≤25, 5≤y+z≤30, 0.1≤p≤30, q≤10 and r≤10, the alloy being at least 50% crystalline with an average particle size of 100 nm or less. This alloy has low core loss, high permeability and low magnetostriction.
An iron-based soft magnetic alloy greater than 63.5mm in width, a thickness between 13 and 20 microns and having a composition represented by the following formula: (Fe1-a Ma)100-x-y-z-p-q-r Cux Siy Bz M'p M"q Xr wherein M is Co and/or Ni, M' is at least one element selected from the group consisting of Nb, W, Ta, Zr, Hf, Ti and Mo, M" is at least one element selected from the group consisting of V, Cr, Mn, Al, elements in the platinum group, Sc, Y, rare earth elements, Au, Zn, Sn and Re, X is at least one element selected from the group consisting of C, Ge, P, Ga, Sb, In, Be and As, and a, x, y, z, p, q and r respectively satisfy 0 ≤ a ≤ 0.5, 0.1 ≤x ≤ 3, 0 ≤y ≤ 30, 1 ≤ z ≤ 25, 5 ≤ y+z ≤30, 0.1 ≤p ≤30, q ≤ 10 ≤ and r ≤ 10, the alloy being at least 50% crystalline with an average particle size of 100 nm or less. This alloy has low core loss, high permeability and low magnetostriction.
A nanocrystalline alloy ribbon has a local structure having nanocrystals with average particle sizes of less than 40 nm dispersed in an amorphous matrix, the nanocrystals occupying more than 30 volume percent of the ribbon and has a radius of ribbon curvature of at least 200 mm. The ribbon may have an iron-based alloy composition comprising Cu in an amount of 0.6 to 1.2 atomic percent, B in an amount of 10 to 20 atomic percent, and Si in an amount greater than 0 atomic percent and up to 10 atomic percent, with B and Si having a combined content of 10 to 24 atomic percent.
A magnetic core includes a nanocrystalline alloy ribbon having a local structure such that nanocrystals with average particle sizes of less than 40 nm are dispersed in an amorphous matrix and are occupying more than 30 volume percent of the ribbon. The ribbon may have an iron-based alloy composition comprising Cu in an amount of 0.6 to 1.2 atomic percent, B in an amount of 10 to 20 atomic percent, and Si in an amount greater than 0 atomic percent and up to 10 atomic percent, with B and Si having a combined content of 10 to 24 atomic percent.
H01F 1/147 - Alliages caractérisés par leur composition
C21D 1/18 - DurcissementTrempe avec ou sans revenu ultérieur
H01F 41/02 - Appareils ou procédés spécialement adaptés à la fabrication ou à l'assemblage des aimants, des inductances ou des transformateursAppareils ou procédés spécialement adaptés à la fabrication des matériaux caractérisés par leurs propriétés magnétiques pour la fabrication de noyaux, bobines ou aimants
C22C 38/02 - Alliages ferreux, p. ex. aciers alliés contenant du silicium
C22C 38/16 - Alliages ferreux, p. ex. aciers alliés contenant du cuivre
C22C 38/12 - Alliages ferreux, p. ex. aciers alliés contenant du tungstène, du tantale, du molybdène, du vanadium ou du niobium
C21D 6/00 - Traitement thermique des alliages ferreux
C22C 38/00 - Alliages ferreux, p. ex. aciers alliés
H01F 1/153 - Alliages métalliques amorphes, p. ex. métaux vitreux
C21D 8/12 - Modification des propriétés physiques par déformation en combinaison avec, ou suivie par, un traitement thermique pendant la fabrication d'objets à propriétés électromagnétiques particulières
C22C 45/02 - Alliages amorphes avec le fer comme constituant majeur
27.
Magnetic core based on a nanocrystalline magnetic alloy
b, where 0.6≤x<1.2, 10≤y≤20, 0≤(y+z)≤24, and 0≤a≤10, 0≤b≤5, all numbers being in atomic percent, with the balance being Fe and incidental impurities, and where A is an optional inclusion of at least one element selected from Ni, Mn, Co, V, Cr, Ti, Zr, Nb, Mo, Hf, Ta and W, and X is an optional inclusion of at least one element selected from Re, Y, Zn, As, In, Sn, and rare earth elements. The nanocrylstalline alloy ribbon has a local structure such that nanocrystals with average particle sizes of less than 40 nm are dispersed in an amorphous matrix and are occupying more than 30 volume percent of the ribbon.
H01F 3/04 - Noyaux, culasses ou induits en bandes ou rubans
C21D 8/12 - Modification des propriétés physiques par déformation en combinaison avec, ou suivie par, un traitement thermique pendant la fabrication d'objets à propriétés électromagnétiques particulières
C21D 9/52 - Traitement thermique, p. ex. recuit, durcissement, trempe ou revenu, adapté à des objets particuliersFours à cet effet pour fils métalliquesTraitement thermique, p. ex. recuit, durcissement, trempe ou revenu, adapté à des objets particuliersFours à cet effet pour bandes métalliques
C22C 38/16 - Alliages ferreux, p. ex. aciers alliés contenant du cuivre
C22C 38/12 - Alliages ferreux, p. ex. aciers alliés contenant du tungstène, du tantale, du molybdène, du vanadium ou du niobium
C22C 38/02 - Alliages ferreux, p. ex. aciers alliés contenant du silicium
C22C 38/00 - Alliages ferreux, p. ex. aciers alliés
H01F 1/153 - Alliages métalliques amorphes, p. ex. métaux vitreux
H01F 41/02 - Appareils ou procédés spécialement adaptés à la fabrication ou à l'assemblage des aimants, des inductances ou des transformateursAppareils ou procédés spécialement adaptés à la fabrication des matériaux caractérisés par leurs propriétés magnétiques pour la fabrication de noyaux, bobines ou aimants
C22C 45/02 - Alliages amorphes avec le fer comme constituant majeur
C21D 1/04 - Procédés ou dispositifs généraux pour le traitement thermique, p. ex. recuit, durcissement, trempe ou revenu avec application simultanée d'ondes supersoniques, de champs magnétiques ou électriques
28.
Fe-Si-B-C-BASED AMORPHOUS ALLOY RIBBON AND TRANSFORMER CORE FORMED THEREBY
An Fe-Si-B-C-based amorphous alloy ribbon as thick as 20-30 μm having a composition comprising 80.0-80.7 atomic % of Fe, 6.1-7.99 atomic % of Si, and 11.5-13.2 atomic % of B, the total amount of Fe, Si and B being 100 atomic %, and further comprising 0.2-0.45 atomic % of C per 100 atomic % of the total amount of Fe, Si and B, except for inevitable impurities has a stress relief degree of 92% or more.
H01F 1/153 - Alliages métalliques amorphes, p. ex. métaux vitreux
H01F 41/02 - Appareils ou procédés spécialement adaptés à la fabrication ou à l'assemblage des aimants, des inductances ou des transformateursAppareils ou procédés spécialement adaptés à la fabrication des matériaux caractérisés par leurs propriétés magnétiques pour la fabrication de noyaux, bobines ou aimants
C22C 45/02 - Alliages amorphes avec le fer comme constituant majeur
f with approximately 30 atomic percent≤a≤approximately 38 atomic percent; approximately 10 atomic percent≤b≤approximately 20 atomic percent; approximately 7 atomic percent≤c≤approximately 20 atomic percent; approximately 2 atomic percent≤d≤approximately 4 atomic percent; e≤approximately 2 atomic percent; f≤approximately 5 atomic percent; and the balance being Ni and other impurities; where c+d+e
B21C 37/00 - Fabrication de tôles, barres, fils, tubes ou profilés métalliques ou de produits semi-finis similaires, non prévue ailleursFabrication de tubes de forme particulière
B23K 35/30 - Emploi de matériaux spécifiés pour le soudage ou le brasage dont le principal constituant fond à moins de 1550 C
B23K 35/02 - Baguettes, électrodes, matériaux ou environnements utilisés pour le brasage, le soudage ou le découpage caractérisés par des propriétés mécaniques, p. ex. par la forme
C22C 19/05 - Alliages à base de nickel ou de cobalt, seuls ou ensemble à base de nickel avec du chrome
C22C 30/00 - Alliages contenant moins de 50% en poids de chaque constituant
F28F 21/08 - Structure des appareils échangeurs de chaleur caractérisée par l'emploi de matériaux spécifiés de métal
Disclosed is a semi-amorphous, ductile brazing foil with a composition consisting essentially of NibalFeaCrbPcSidBeMof with approximately 30 atomic percent ≤ a ≤ approximately 70 atomic percent; approximately 0 atomic percent ≤ b ≤ approximately 20 atomic percent; approximately 9 atomic percent ≤ c ≤ approximately 16 atomic percent; approximately 0 atomic percent ≤ d ≤ approximately 4 atomic percent; e ≤ approximately 2 atomic percent; f ≤approximately 5 atomic percent; and the balance being Ni and other impurities; where c+d+e < approximately 16 atomic percent.
B23K 35/02 - Baguettes, électrodes, matériaux ou environnements utilisés pour le brasage, le soudage ou le découpage caractérisés par des propriétés mécaniques, p. ex. par la forme
B23K 35/30 - Emploi de matériaux spécifiés pour le soudage ou le brasage dont le principal constituant fond à moins de 1550 C
F28F 21/08 - Structure des appareils échangeurs de chaleur caractérisée par l'emploi de matériaux spécifiés de métal
f with approximately 30 atomic percent ≤a≤approximately 70 atomic percent; approximately 0 atomic percent ≤b≤approximately 20 atomic percent; approximately 9 atomic percent ≤c≤approximately 16 atomic percent; approximately 0 atomic percent ≤d≤approximately 4 atomic percent; e≤approximately 2 atomic percent; f≤approximately 5 atomic percent; and the balance being Ni and other impurities; where c+d+e
B21C 37/00 - Fabrication de tôles, barres, fils, tubes ou profilés métalliques ou de produits semi-finis similaires, non prévue ailleursFabrication de tubes de forme particulière
B23K 35/30 - Emploi de matériaux spécifiés pour le soudage ou le brasage dont le principal constituant fond à moins de 1550 C
B32B 15/01 - Produits stratifiés composés essentiellement de métal toutes les couches étant composées exclusivement de métal
B32B 9/04 - Produits stratifiés composés essentiellement d'une substance particulière non couverte par les groupes comprenant une telle substance comme seul composant ou composant principal d'une couche adjacente à une autre couche d'une substance spécifique
f with approximately 24 atomic percent≤a≤approximately 31 atomic percent; b≤approximately 3 atomic percent; approximately 9 atomic percent≤c≤approximately 11 atomic percent; approximately 2 atomic percent≤d≤approximately 4 atomic percent; e≤approximately 2 atomic percent; f≤approximately 1 atomic percent; and the balance being Ni and other impurities; where b+c+d
B23K 35/30 - Emploi de matériaux spécifiés pour le soudage ou le brasage dont le principal constituant fond à moins de 1550 C
B23K 35/02 - Baguettes, électrodes, matériaux ou environnements utilisés pour le brasage, le soudage ou le découpage caractérisés par des propriétés mécaniques, p. ex. par la forme
Disclosed is the semi-amorphous, ductile brazing foil with composition consisting essentially of NibalCraBbPcSidMoeFef with approximately 24 atomic percent ≤ a ≤ approximately 31 atomic percent; b ≤ approximately 3 atomic percent; approximately 9 atomic percent ≤ c ≤ approximately 11 atomic percent; approximately 2 atomic percent ≤ d ≤ approximately 4 atomic percent; e ≤ approximately 2 atomic percent; f ≤ approximately 1 atomic percent; and the balance being Ni and other impurities; where b+c+d < approximately 16 atomic percent.
An amorphous alloy-based magnetic core with reduced audible noise and a method of making the amorphous alloy-based magnetic core emanating low audible noise, including: placing the core with multiple layers of high strength tape on the core legs, wherein the tapes have a high tensile strength, high dielectric strength and high service temperature, resulting in reduced level of audible noise. When operated under optimum condition, the reduced level of audible noise is 6-10 dB less when compared with a same-size core that has been coated with resin instead.
A magnetomechanical resonance element or marker strip with facilitated performance based on an amorphous magnetostrictive alloy ribbon having a line-like surface pattern is utilized in an electronic article surveillance marker or sensor element. A direction of magnetic anisotropy at angle between 80 and 90 degree away from ribbon's length direction and in ribbon's plane is introduced during ribbon fabrication, which increases the resonance performance with minimal loss in the magneto-mechanical circuit, and more particularly, in a marker or sensor element utilizing a plurality of resonating elements or marker strips. A marker or sensor element is fabricated utilizing the resonance element or elements and is utilized in an electronic article surveillance and identification systems.
G06K 19/06 - Supports d'enregistrement pour utilisation avec des machines et avec au moins une partie prévue pour supporter des marques numériques caractérisés par le genre de marque numérique, p. ex. forme, nature, code
36.
FERROMAGNETIC AMORPHOUS ALLOY RIBBON WITH REDUCED SURFACE PROTRUSIONS, METHOD OF CASTING AND APPLICATION THEREOF
A ferromagnetic amorphous alloy ribbon having a composition represented by FeSibBcCd where 80.5 = a = 83 at.%, 0.5 = b = f at.%, 12 = c = 16.5 at.%, 0.01 = d = 1 at. % with a + b + c + d = 100 and incidental impurities. The ribbon being cast from a molten state of the alloy with a surface tension of greater than or equal to 1.1 N/m on a chill body surface; the ribbon having ribbon surface protrusions facing the chill body surface; the protrusion height between 3 micrometers and four times the ribbon thickness, the number of protrusions being less than 10 within 1.5 m of the cast ribbon length. The ribbon is suitable for transformer cores, rotational machines, electrical chokes, magnetic sensors, and pulse power devices.
A ferromagnetic amorphous alloy ribbon includes an alloy having a composition represented by FeaSib,BcCd where 80.5 ≤ a ≤ 83 at.%, 0.5 ≤ b ≤ 6 at.%, 12 ≤ c ≤ 16.5 at.%, 0.01 ≤ d ≤1 at.% with a + b + c + d = 100 and incidental impurities, the defect length along a direction of the ribbon's length being between 5 mm and 200 mm, the defect depth being less than 0.4x t μιη and the defect occurrence frequency being less than 0.05x w times within 1.5 m of ribbon length, where f and w are ribbon thickness and ribbon width, respectively, and the ribbon in its annealed state and straight strip form of the ribbon, has a saturation magnetic induction exceeding 1.60 T, and exhibits a magnetic core loss of less than 0.14 W/kg when measured at 60 Hz and at 1.3 T induction level. The ribbon is suitable for use in transformer cores, rotational machines, electrical chokes, magnetic sensors and pulse power devices.
A ferromagnetic amorphous alloy ribbon includes an alloy having a composition represented by FeaSibBcCd where 80.5 = a = 83 at.%, 0.5 =b = 6 at.%, 12 = c =16.5 at.%, 0.01 = d = 1 at. % with a + b + c + d = 100 and incidental impurities; the ribbon being cast from a molten state of the alloy. The ribbon is suitable for use in transformer cores, rotational machines, electrical chokes, magnetic sensors and pulse power devices.
A device and method of remote temperature sensing, the device having a temperature sensor placeable on a rotating item utilizing the temperature sensor being a plurality of rectangular shaped amorphous magnetic alloy strips connected magnetically, wherein at least one of the strips has a predetermined ferromagnetic Curie temperature and another strip has a magnetic permeability exceeding 2,000.
A temperature sensor includes a plurality of rectangular shaped amorphous magnetic alloy strips connected magnetically, wherein at least one of the strips has a predetermined ferromagnetic Curie temperature, and another strip has a magnetic permeability well exceeding 2,000. The temperature sensor may be used in a related remote temperature sensing method wherein the sensor is interrogated by a magnetic field and the temperature sensor's response signal is detected electromagnetically.