Patent classifications
F16F2230/105
Folding bellows for use with a vehicle subassembly
A folding bellows for protecting an interior of the folding bellows effectively from environmental influences and managing pressure changes in the interior. The folding bellows having a gas-tight casing including a plurality of folds in an axial direction. Opposed front faces adjoining the casing. The front faces closed in a gas-tight manner. The casing having a wide region and a narrow region each formed of a plurality of folds with the outer cross-sectional surface of the folds in the wide region being larger than those in the narrow region. The folding bellows in one embodiment used with a motor vehicle subassembly.
Soft-to-hard goods connections with dynamic energy dissipation enhanced through friction
A soft-to-hard goods connector is provided which includes an elastomeric bladder having a preform layer and an outer textile layer enclosing the preform layer. The outer textile layer has at least one skin extension layer extending beyond a periphery of the elastomeric bladder. The skin extension layer has a chord attached at a distal end with the chord being perpendicular to the skin extension layer. The connector includes a host rigid structure with a receiving component. The receiving component has a mounting track with the chord mounted in the mounting track. The receiving component permits the chord to rotate about a longitudinal axis of the chord with a limited range of motion.
Fluid-filled damper for gas bearing assembly
The present disclosure is directed to a gas-lubricated bearing assembly for a gas turbine engine and method of damping same. The bearing assembly includes a bearing pad for supporting a rotary component and a bearing housing attached to or formed integrally with the bearing pad. The bearing housing includes a first fluid damper cavity, a second fluid damper cavity in restrictive flow communication with the first fluid damper cavity via a restrictive channel configured as a clearance gap, and a damper fluid configured within the first and second fluid damper cavities. More specifically, the damper fluid of the present disclosure is configured to withstand the high temperature environment of the engine. Thus, the bearing housing is configured to transfer the damper fluid from the first fluid damper cavity to the second fluid damper cavity via the restrictive channel in response to a force acting on the bearing pad.
Shock absorbing container and vibration isolator system
A container system including an outer shell, a deck disposed within the outer shell and configured to support cargo, and at least one vibration isolator member to support the deck within the outer shell and reduce or dampen a transfer of shock or vibration to the deck. Each vibration isolator member includes a hollow, flexible body configured to resiliently compress in response to a force. At least one fastener interface secures the flexible body to the bottom wall or to the deck. The hollow, flexible body has one or more apertures to allow fluid flow into and out of an inner cavity of the flexible body during compression or expansion.
BRAKE BOOSTING DEVICE
A brake boosting device wherein a vibration control member is provided to an end part of a return coil spring that is arranged inside a vehicle chamber and that is interposed between a booster body and an input rod. The vibration control member has provided thereto: a seat part that suppresses the vibration of the return coil spring and that is between the end part of the return coil spring and a support part that supports the end part; and a guide part that is provided integrally with the seat part and that fits with the inner periphery of the end part of the return coil spring at a prescribed radial tightening allowance.
STABILIZER BUSH APPARATUS
Proposes is a stabilizer bush apparatus including a bracket coupled to a sub-frame, a bearing installed on the bracket, and a bush coupled to the bearing, surrounding a stabilizer bar, and including a sealing portion, the sealing portion being elastically deformed, thereby coming into contact with the bracket and blocking foreign material from being introduced from the outside into the bracket.
Soft-to-hard goods connections with dynamic energy dissipation having offset connections
A soft-to-hard goods connector is provided which includes an elastomeric bladder having a preform layer and an outer textile layer enclosing the preform layer. The outer textile layer has at least one skin extension layer extending beyond a periphery of the elastomeric bladder. The skin extension layer has a chord attached at a distal end with the chord being perpendicular to the skin extension layer. The connector includes a host rigid structure with a receiving component. The receiving component has a mounting track with the chord mounted in the mounting track. The receiving component permits the chord to rotate about a longitudinal axis of the chord with a limited range of motion.
COIL SPRINGS, POCKETED COIL SPRINGS ASSEMBLIES, AND MATTRESSES INCLUDING THE SAME
A coil spring comprises a continuous wire forming a lowermost convolution, an uppermost convolution, and a plurality of helical intermediate convolutions. The coil spring is divided into an upper portion and a lower portion. The intermediate convolutions of the lower portion have a diameter greater than or equal to a lower minimum diameter, and the pitch between each of the convolutions of the lower portion is greater than or equal to a lower minimum pitch. The intermediate convolutions of the upper portion have a diameter greater than or equal to an upper minimum diameter, and the pitch between each of the convolutions of the upper portion is less than or equal to an upper maximum pitch. The upper minimum diameter is greater than, less than, or equal to the lower minimum diameter, and the upper maximum pitch is less than the lower minimum pitch to provide a non-linear and variable response.
SPRING MODULE CONFIGURED TO BE COMPRESSED FOR STORAGE, ELASTIC MODULE, AND ELASTIC MATTRESS
A spring module configured to be compressed for storage, the spring module includes an upper cover, a base and a spring disposed between the upper cover and the base; a lower end surface of the upper cover includes a first locking structure, and an upper end the base includes a second locking structure; the first locking structure and the second locking structure reach a locked position to be buckled together in a direction opposite to the opposite movement by an external force; and the first locking structure and the second locking structure in a locked state release from being buckled together by the external force.
SPRING STRUCTURE WITH ADJUSTABLE HARDNESS AND SPRING PACKAGE
A spring structure with adjustable hardness, the spring structure with the adjustable hardness includes a spring, an adjustment member, and a wrapping member, the wrapping member is used for wrapping the spring, the adjustment member is used for adjusting a pre-compression force of the spring, the adjustment member is disposed on one end of the spring to squeeze the one end of the spring, the adjustment member includes a rotating member, a moving member, and a support member, the moving member is movably mounted on the support member, the rotating member is connected to the support member by a linkage, the rotating member rotates to drive the support member to rotate, and the moving member moves up and down along the support member to squeeze the spring by rotating the support member.