A helical strake pole system that includes a tubular pole having a longitudinal axis and threaded attachment points. The system further includes a helical strake fin disposed circumferentially around a portion of the tubular pole along the longitudinal axis. The system further includes couplers disposed on the tubular pole. The couplers are configured such that each coupler has a first portion with a slot configured to receive an upper portion of the helical strake fin and a second portion configured to removably coupled to a threaded attachment point of the tubular pole. In addition, each coupler is configured to position a portion of the helical strake fin substantially perpendicular to a surface of the tubular pole.
A helical strake pole system that includes a tubular pole having a longitudinal axis and threaded attachment points. The system further includes a helical strake fin disposed circumferentially around a portion of the tubular pole along the longitudinal axis. The system further includes couplers disposed on the tubular pole. The couplers are configured such that each coupler has a first portion with a slot configured to receive an upper portion of the helical strake fin and a second portion configured to removably coupled to a threaded attachment point of the tubular pole. In addition, each coupler is configured to position a portion of the helical strake fin substantially perpendicular to a surface of the tubular pole.
F16L 55/04 - Dispositifs amortisseurs de vibrations ou de pulsations dans les fluides
F16L 55/07 - Aménagement ou montage de dispositifs, p. ex. soupapes, pour ventiler ou aérer ou purger
F15D 1/10 - Action sur l'écoulement des fluides autour de corps formés d'un matériau solide
F16L 57/00 - Protection des tuyaux ou d'objets de forme similaire contre les dommages ou les usures internes ou externes
F16M 13/02 - Autres supports ou appuis pour positionner les appareils ou les objetsMoyens pour maintenir en position les appareils ou objets tenus à la main pour être portés par un autre objet ou lui être fixé, p. ex. à un arbre, une grille, un châssis de fenêtre, une bicyclette
F16L 1/12 - Pose ou récupération des tuyaux sur ou sous l'eau
A device that includes pier caps. Each pier cap is configured to couple to a pole that is at least partially embedded below a surface of a ground. The device further includes threaded rods coupled with the pier caps. The device further includes an assembly frame that includes a base plate and coupling arms. The base plate includes a first plurality of openings that are configured to interface with a structure that is installed onto the base plate. The first plurality of openings are configured to allow a position of the structure to be adjusted radially about the base plate. Each coupling arm includes a second plurality of openings that are configured to allow a position of the assembly frame to be adjusted along a horizontal plane. Each coupling arm is coupled to a threaded rod and a position for each coupling arm is adjustable vertically along the threaded rod.
E04C 3/34 - ColonnesPiliersArcs-boutants en béton ou autre matériau analogue à la pierre, avec ou sans éléments de coffrage permanents, avec ou sans armature interne ou externe, p. ex. recouvrements métalliques
E04H 12/34 - Dispositions pour élever ou abaisser des tours, mâts, poteaux, corps de cheminée ou analogues
A device that includes pier caps. Each pier cap is configured to couple to a pole that is at least partially embedded below a surface of a ground. The device further includes threaded rods coupled with the pier caps. The device further includes an assembly frame that includes a base plate and coupling arms. The base plate includes a first plurality of openings that are configured to interface with a structure that is installed onto the base plate. The first plurality of openings are configured to allow a position of the structure to be adjusted radially about the base plate. Each coupling arm includes a second plurality of openings that are configured to allow a position of the assembly frame to be adjusted along a horizontal plane. Each coupling arm is coupled to a threaded rod and a position for each coupling arm is adjustable vertically along the threaded rod.
A helical strake pole system that includes a tubular pole having a longitudinal axis and threaded attachment points. The system further includes a helical strake fin disposed circumferentially around a portion of the tubular pole along the longitudinal axis. The system further includes couplers disposed on the tubular pole. The couplers are configured such that each coupler has a first portion with a slot configured to receive an upper portion of the helical strake fin and a second portion configured to removably coupled to a threaded attachment point of the tubular pole. In addition, each coupler is configured to position a portion of the helical strake fin substantially perpendicular to a surface of the tubular pole.
F16L 55/04 - Dispositifs amortisseurs de vibrations ou de pulsations dans les fluides
F16L 55/07 - Aménagement ou montage de dispositifs, p. ex. soupapes, pour ventiler ou aérer ou purger
F15D 1/10 - Action sur l'écoulement des fluides autour de corps formés d'un matériau solide
F16L 57/00 - Protection des tuyaux ou d'objets de forme similaire contre les dommages ou les usures internes ou externes
F16M 13/02 - Autres supports ou appuis pour positionner les appareils ou les objetsMoyens pour maintenir en position les appareils ou objets tenus à la main pour être portés par un autre objet ou lui être fixé, p. ex. à un arbre, une grille, un châssis de fenêtre, une bicyclette
F16L 1/12 - Pose ou récupération des tuyaux sur ou sous l'eau
6.
HELICAL STRAKE ATTACHMENT FOR TUBULAR STRUCTURAL MEMBERS
A helical strake pole system that includes a tubular pole having a longitudinal axis and threaded attachment points. The system further includes a helical strake fin disposed circumferentially around a portion of the tubular pole along the longitudinal axis. The system further includes couplers disposed on the tubular pole. The couplers are configured such that each coupler has a first portion with a slot configured to receive an upper portion of the helical strake fin and a second portion configured to removably coupled to a threaded attachment point of the tubular pole. In addition, each coupler is configured to position a portion of the helical strake fin substantially perpendicular to a surface of the tubular pole.
F16B 5/06 - Jonction de feuilles ou de plaques soit entre elles soit à des bandes ou barres parallèles à elles par brides ou clips
E04B 1/98 - Protection contre d'autres agents indésirables ou dangers contre les vibrations ou les chocsProtection contre d'autres agents indésirables ou dangers contre les destructions mécaniques, p. ex. par les raids aériens
E04H 12/00 - ToursMâts ou pylônesCheminées d'usineChâteaux d'eauProcédés d'édification de ces structures
F15D 1/10 - Action sur l'écoulement des fluides autour de corps formés d'un matériau solide
F16B 1/00 - Dispositifs pour assembler des éléments structuraux ou parties de machines ou bien pour empêcher tout mouvement relatif entre eux
An embedded pole installation method including applying a rotational force to a leading pole and an intermediate pole. The leading pole comprises a first helical plate disposed on a first portion of the leading pole. The intermediate pole is coupled to a second portion of the leading pole and comprises a second helical plate disposed on a first portion of the intermediate pole. The diameter of the intermediate pole is greater than a diameter of the leading pole. Applying the rotational force embeds the first helical plate and the second helical plate into a foundation such that a second portion of the intermediate pole does not penetrate the foundation. The method further includes coupling a utility pole to the second portion of the intermediate pole.
An embedded pole installation method including applying a rotational force to a leading pole and an intermediate pole. The leading pole comprises a first helical plate disposed on a first portion of the leading pole. The intermediate pole is coupled to a second portion of the leading pole and comprises a second helical plate disposed on a first portion of the intermediate pole. The diameter of the intermediate pole is greater than a diameter of the leading pole. Applying the rotational force embeds the first helical plate and the second helical plate into a foundation such that a second portion of the intermediate pole does not penetrate the foundation. The method further includes coupling a utility pole to the second portion of the intermediate pole.
An embedded pole installation method including applying a rotational force to a leading pole and an intermediate pole. The leading pole comprises a first helical plate disposed on a first portion of the leading pole. The intermediate pole is coupled to a second portion of the leading pole and comprises a second helical plate disposed on a first portion of the intermediate pole. The diameter of the intermediate pole is greater than a diameter of the leading pole. Applying the rotational force embeds the first helical plate and the second helical plate into a foundation such that a second portion of the intermediate pole does not penetrate the foundation. The method further includes coupling a utility pole to the second portion of the intermediate pole.
An embedded pole installation method including applying a rotational force to a leading pole and an intermediate pole. The leading pole comprises a first helical plate disposed on a first portion of the leading pole. The intermediate pole is coupled to a second portion of the leading pole and comprises a second helical plate disposed on a first portion of the intermediate pole. The diameter of the intermediate pole is greater than a diameter of the leading pole. Applying the rotational force embeds the first helical plate and the second helical plate into a foundation such that a second portion of the intermediate pole does not penetrate the foundation. The method further includes coupling a utility pole to the second portion of the intermediate pole.
A support assembly includes a plurality of support arms coupled to a pole or tower structure. The plurality of support arms project radially from the pole or tower structure in a spaced relationship. A plurality of adjustable foot assemblies are coupled to respective distal ends of the plurality of support arms. Each of the plurality of adjustable foot assemblies is configured for coupling to an embedded helical pier. Each of the plurality of adjustable foot assemblies is capable of movement in each of three dimensions relative to the respective support arm to which it is coupled during installation of the support assembly.
A support assembly includes a plurality of support arms coupled to a pole or tower structure. The plurality of support arms project radially from the pole or tower structure in a spaced relationship. A plurality of adjustable foot assemblies are coupled to respective distal ends of the plurality of support arms. Each of the plurality of adjustable foot assemblies is configured for coupling to an embedded helical pier. Each of the plurality of adjustable foot assemblies is capable of movement in each of three dimensions relative to the respective support arm to which it is coupled during installation of the support assembly.
A foundation system for electrical utility structures is provided that minimizes impact on the chosen construction site, minimizes labor and minimizes associated installation costs. The foundation system comprises a structure to be supported at its base which has a plurality of arm members secured to the base and a plurality of helical piers or micropiles which are inserted into the ground and distally attached to the base of the structure by attaching to the arm members.
A monopole support assembly includes at least two truss assemblies secured to an outer surface of a monopole. At least two helical piers or micropiles are secured to the at least two truss assemblies, respectively.
A foundation system for electrical utility structures is provided that minimizes impact on the chosen construction site, minimizes labor and minimizes associated installation costs. The foundation system comprises a structure to be supported at its base which has a plurality of arm members secured to the base and a plurality of helical piers or micropiles which are inserted into the ground and distally attached to the base of the structure by attaching to the arm members.
Embodiments provide apparatus for supporting at least one utility cable for spanning above ground, the apparatus comprising a centrifugally cast prestressed concrete pole, a structural adapter, and a cable support structure including an open lattice frame.
A structural member and method with an improved arm connection is provided that allows quick connection of an arm to the structural member. Pins are inserted through aligned apertures in first and second thru-vangs, as well as an abutting arm bracket. A flexible securement member is inserted through an aperture in the pins that is transverse to the pins. Last, an arm is secured to the arm bracket for support of electrical conductors strung thereon.
Metal arm connections for electrical poles, namely, metal arm connection pins for use in securing and aligning metal arms on distribution and transmission pole structures
A structural member and method with an improved arm connection is provided that allows quick connection of an arm to the structural member. Pins are inserted through aligned apertures in first and second thru-vangs, as well as an abutting arm bracket. A flexible securement member is inserted through an aperture in the pins that is transverse to the pins. Last, an arm is secured to the arm bracket for support of electrical conductors strung thereon.
A ground strap assembly couples two conductive components of a utility structure. The ground strap assembly includes an elongate electrically conductive ground strap having opposed ends. A pair of attachment members are mechanically and electrically coupled to each end of the strap. Each attachment member has a magnetic surface so that the ends of the strap may be placed in removable magnetic attachment to the two components to establish ground continuity across the components.
A structural member and method with an improved arm connection is provided that allows quick connection of an arm to the structural member. Bolts are inserted through aligned apertures in first and second thru-vangs, as well as an abutting arm bracket. A securement member is inserted through an aperture in the bolts that is transverse to the bolts. Last, an arm is secured to the arm bracket for support of electrical conductors strung thereon.
A pair of removable driving tabs are provided for a base plate that has at least two opposing apertures disposed therein. Each of the removable driving tabs are gripped by a machine for vibrating each of the pair of removable driving tabs. The driving tabs are releasably secured to a base plate that is mounted on a caisson. When the driving tabs are vibrated by the machine, the vibration is transferred through the base plate and into the caisson, which is vibrated into the ground for installation.
A pair of removable driving tabs are provided for a base plate that has at least two opposing apertures disposed therein. Each of the removable driving tabs are gripped by a machine for vibrating each of the pair of removable driving tabs. The driving tabs are releasably secured to a base plate that is mounted on a caisson. When the driving tabs are vibrated by the machine, the vibration is transferred through the base plate and into the caisson, which is vibrated into the ground for installation.
40 - Traitement de matériaux; recyclage, purification de l'air et traitement de l'eau
Produits et services
(1) Custom manufacture of metal structures for utility, communications, and wind applications, comprising metal poles, metal lattice structures, metal towers, metal supports and metal cross arms.
40 - Traitement de matériaux; recyclage, purification de l'air et traitement de l'eau
Produits et services
custom manufacture of metal structures for utility, communications, and wind applications, comprising metal poles, metal lattice structures, metal towers, metal supports and metal cross arms