Abstract:
A machining method and coupling structure for a fiber reinforced plastic structure member (1) obtained by narrowing an end of the member (1). Also included are a reinforcing member (4) which inhibits expansion by adhering to the outer circumference of the narrowed portion of the fiber reinforced plastic structure member, a locking member (2) which is provided with a through-hole (2a) in an axial direction and which fits into a narrowed portion (1a) of the fiber reinforced plastic structure member 1, a coupling anchoring member (3) which is provided with a rotation stop on the side thereof, and a spacer (5) which restricts only a rotation of the coupling anchoring member (3) and which is attached between a member (7) to be coupled and an end of the fiber reinforced plastic structure member (1) by passing the coupling anchoring member (3) through so as to slide in the axial direction.
Abstract:
In general, embodiments of the present invention relate to a reinforcing bar connector. Specifically, the present invention provides a reinforcing bar connector including a holder and a binding member. The holder includes a first cover and a second cover. The holder is inserted into the binding member with the reinforcing bars surrounded by the holder. The first cover and the second cover are moved independently from each other enabling a secure connection between the reinforcing bars regardless of whether the reinforcing bars have the same or different lug arrays.
Abstract:
A rotary joint includes an outer shell segment having the outer shape of a solid of revolution, the outer shell segment having a plurality of openings arranged in the outer surface; an inner shell segment having the outer shape of the solid of revolution of the outer shell segment, the inner shell segment being aligned concentrically with the outer shell segment and spaced apart from the outer shell segment by a compensation gap; and a plurality of strut holding fixtures, the strut holding fixtures having a hollow interior and a flange portion, wherein each of the strut holding fixtures is arranged in one of the plurality of openings and the flange portion extends within the compensation gap between the inner shell segment and the outer shell segment in each case.
Abstract:
A corner piece is provided for interconnecting frame members. The corner piece includes a first plate member defining an inner face, an opposite outer face, a first side face, an opposite second side face, and an end face. The first plate member including a bolt-receiving bore therethrough. A second plate member defines an inner face contiguous with the inner face of the first plate member, an outer face, a first side face, an opposite second side face, and an end face. The second plate member includes a bolt-receiving bore extending between the inner face and the outer face thereof along a first axis generally parallel to the inner face of the first plate member.
Abstract:
An interlocking joint system can be used to build emergency shelters. The system provides emergency structures that can be assembled by anyone but still handle heavy weather. The system also provides an armorable air droppable structure for military. Shelters built with the system require no tools or special training and such shelters typically become stronger as more force is applied to the joints. The shelter design laterally redirects how wind load and weight load affects the structure.
Abstract:
An interlocking joint system can be used to build emergency shelters. The system provides emergency structures that can be assembled by anyone but still handle heavy weather. The system also provides an armorable air droppable structure for military. Shelters built with the system require no tools or special training and such shelters typically become stronger as more force is applied to the joints. The shelter design laterally redirects how wind load and weight load affects the structure.
Abstract:
The present invention provides a portable modular roof truss system for creating a symmetric roof. In one embodiment, the portable modular roof truss system comprises a collar, a crossbar, two arms, two connecting members, and a locking mechanism. The arms are elongated hollow cylinders coupled to opposing sides of the hollow cylindrical collar at a predetermined slope. The crossbar is also an elongated cylinder residing parallel to the ground and is coupled to both arms. Each hollow cylindrical connecting member is coupled to the end of an arm, respectively. Finally, the locking mechanism is coupled to the bottom portion of the collar and prevents a roof pole residing therein from moving back and forth. Each connecting member further comprises two apertures residing on opposite sides of the member used to couple the truss system to a variety of truss components (e.g., spacers, clamps, hinges, etc.).
Abstract:
A reinforced connector assembly for a tubular grab railing has an upper tubing support that is aligned with the grab railing during use and a lower base portion bolted directly to the tubing support fastened to a wall or floor. The tubing support has an opening that divides it into upper and lower halves with a reinforcing plate hidden between them to form a three layer sandwich structure with at least one boss confined during use within the tubing. The connector assembly is a composite formed from an outer plastic resinous connector element and the hidden reinforcing plate which can be formed from steel. The reinforcing plate which provides reinforcement for the plastic components can include exposed ears on each side that frictionally engage and distend the tubing to prevent it from rotating during use. An adjustable connector assembly has two pivotally related portions to permit angular adjustment on site. A corner elbow, an end connector and an end extension are provided.
Abstract:
A reinforced connector assembly for a tubular grab railing has an upper tubing support that is aligned with the grab railing during use and a lower base portion bolted directly to the tubing support fastened to a wall or floor. The tubing support has an opening that divides it into upper and lower halves with a reinforcing plate hidden between them to form a three layer sandwich structure with at least one boss confined during use within the tubing. The connector assembly is a composite formed from an outer plastic resinous connector element and the hidden reinforcing plate which can be formed from steel. The reinforcing plate which provides reinforcement for the plastic components can include exposed ears on each side that frictionally engage and distend the tubing to prevent it from rotating during use. An adjustable connector assembly has two pivotally related portions to permit angular adjustment on site. A corner elbow, an end connector and an end extension are also described.
Abstract:
New and unique connecting elements are engage in a versatile manner to construct modular constructions such as construction for exhibition, furniture, platforms, toys, displays etc. The modular construction is mobile and easy to handle.