Abstract:
A linear actuator having a low profile and a long stroke is provided. The actuator includes a housing integrally connected to a telescoping piston. The piston may be extended by a fluid such as inflation gas provided by an inflation gas generator in fluid communication with the piston. The piston extends rapidly through a one-shot stroke. The extending piston converts energy in the fluid into motion for performing linear work. The linear actuator may be formed from a single piece of parent material through stamping processes including deep draw stamping. Alternatively, other metal forming processes may be used to form the linear actuator.
Abstract:
A linear actuator having a low profile and a long stroke is provided. The actuator includes a housing integrally connected to a telescoping piston. The piston may be extended by a fluid such as inflation gas provided by an inflation gas generator in fluid communication with the piston. The piston extends rapidly through a one-shot stroke. The extending piston converts energy in the fluid into motion for performing linear work. The linear actuator may be formed from a single piece of parent material through stamping processes including deep draw stamping. Alternatively, other metal forming processes may be used to form the linear actuator.
Abstract:
A tether release mechanism for a restraining element of a restraint protection system includes a base, a retention device and an actuator. The retention device is coupled to the base for movement between a locked position and a release position. The restraining element is secured relative to the base in the locked position and is movable relative to the base in the release position. The retention device includes a portion for releasably engaging the restraining element. The actuator is operatively associated with the retention device and is operative for at least initiating movement of the retention device from the locked position to the release position.
Abstract:
An airbag module has an inflator activated via an electrical connector. The inflator includes an initiation assembly having an initiator and a receptacle that retains the connector. The initiator may have a single, center pin. The initiator may be encased by a body and cover, which may be attached together by molding, vibratory welding, electromagnetic welding, or snap fitting. The connector may have projections that extend from a main body to facilitate retention of the connector by a collar, washer, a retainer attached to the body, or by the inflator housing. The body may be seated in a collar having an annular ridge that presses into the body to form a seal. The connector may have a rib designed to mesh with splines of the receptacle to enable engagement of the connector with the receptacle in multiple orientations, while preventing relative rotation between the connector and the initiator after assembly.
Abstract:
The motion damper includes a damper wall, damper stages, and a damper head. The damper wall and damper stages are successively smaller in size and have a nested relationship. The damper wall and damper stages are each flexibly attached to an adjacent damper stage or the damper wall such that the damper stages may deploy in a telescopic fashion away from the damper wall. The damper head is attached to a smallest damper stage. As a result, the damper stages change in position relative to the damper wall and relative to each other to absorb the kinetic energy of objects attached to the damper head and damper wall.
Abstract:
A linear actuator having a low profile and a long stroke is provided. The actuator includes a housing integrally connected to a telescoping piston. The piston may be extended by a fluid such as inflation gas provided by an inflation gas generator in fluid communication with the piston. The piston extends rapidly through a one-shot stroke. The extending piston converts energy in the fluid into motion for performing linear work. The linear actuator may be formed from a single piece of parent material through stamping processes including deep draw stamping. Alternatively, other metal forming processes may be used to form the linear actuator.
Abstract:
The motion damper includes a damper wall, damper stages, and a damper head. The damper wall and damper stages are successively smaller in size and have a nested relationship. The damper wall and damper stages are each flexibly attached to an adjacent damper stage or the damper wall such that the damper stages may deploy in a telescopic fashion away from the damper wall. The damper head is attached to a smallest damper stage. As a result, the damper stages change in position relative to the damper wall and relative to each other to absorb the kinetic energy of objects attached to the damper head and damper wall.
Abstract:
Un conjunto de iniciación para un dispositivo pirotécnico, incluyendo el conjunto de iniciación: un iniciador (120) que se enciende en respuesta a la recepción de una señal de activación; caracterizado por un retén (98) acoplado al iniciador, incluyendo el retén al menos tres acanaladuras (108) conformadas para acoplar con al menos un nervio (80) de un conector (26) de tal manera que el conector pueda enganchar con el retén en al menos tres orientaciones para permitir el transporte de la señal de activación del conector al iniciador, donde las acanaladuras (108) y el nervio (80) engranan para evitar la rotación del conector entre las orientaciones.
Abstract:
An airbag module has an inflator activated via an electrical connector. The inflator includes an initiation assembly having an initiator and a receptacle that retains the connector. The initiator may have a single, center pin. The initiator may be encased by a body and cover, which may be attached together by molding, vibratory welding, electromagnetic welding, or snap fitting. The connector may have projections that extend from a main body to facilitate retention of the connector by a collar, washer, a retainer attached to the body, or by the inflator housing. The body may be seated in a collar having an annular ridge that presses into the body to form a seal. The connector may have a rib designed to mesh with splines of the receptacle to enable engagement of the connector with the receptacle in multiple orientations, while preventing relative rotation between the connector and the initiator after assembly.
Abstract:
An assembly including a support housing and an actuator device (20). The actuator device (20) includes an extendable initiator cup (22) including at least one non-random fold (40) and at least in part defining a storage chamber (26) containing a reactive charge (28) reactable to produce reaction products. The extendable initiator cup (22) longitudinally extends from a first length to a second greater length upon reaction initiation of the reactive charge (28). The extendable initiator cup (22) is at least partially disposed within a longitudinally extending bore of the support housing (260). The support housing (260) is effective to limit lateral expansion of the extendable initiator cup (22) upon reaction initiation of the reactive charge (28). The assembly can include an electrical conductive member (250) or an electrical switch. The extendable initiator cup (22) can extend to sever the electrical conductive member (250) or disengage the electrical switch, thereby interrupting the conduction of electricity through an electrical system. Alternatively, the extendable initiator cup (22) can extend to engage the electrical switch thereby allowing the conduction of electricity through an electrical system.