Patent classifications
F16F9/19
Bracket for attachment with a hydraulic damper assembly and a method of joining a bracket and a hydraulic damper assembly
A bracket comprises a body extending along a center axis between a first end and a second end. The body defines a first groove and a second groove. The first groove, located at the first end and flaring radially outwardly, presents a first slanted surface. The second groove, located at the second end and flaring radially outwardly, presents a second slanted surface. A pair of coupling members including a first and a second coupling member are respectively located in the first and second grooves for engagement with a housing of a hydraulic damper assembly. The first end includes at least one first deformation for retaining the first coupling member. The second end includes at least one second deformation for retaining the second coupling member. A hydraulic damper assembly including the bracket and a method of joining the bracket and the hydraulic damper assembly are also disclosed herein.
Bracket for attachment with a hydraulic damper assembly and a method of joining a bracket and a hydraulic damper assembly
A bracket comprises a body extending along a center axis between a first end and a second end. The body defines a first groove and a second groove. The first groove, located at the first end and flaring radially outwardly, presents a first slanted surface. The second groove, located at the second end and flaring radially outwardly, presents a second slanted surface. A pair of coupling members including a first and a second coupling member are respectively located in the first and second grooves for engagement with a housing of a hydraulic damper assembly. The first end includes at least one first deformation for retaining the first coupling member. The second end includes at least one second deformation for retaining the second coupling member. A hydraulic damper assembly including the bracket and a method of joining the bracket and the hydraulic damper assembly are also disclosed herein.
Fluid damper and driving tool
A fluid damper includes a cylinder tube portion which is filled with a fluid, a piston which is provided so as to be movable in an inner portion of the cylinder tube portion and whose moving speed is controlled with resistance of the fluid, and a biasing member which expands and contracts in accordance with a position of the piston and which applies a force corresponding to an expansion and contraction amount of the biasing member to the piston. The resistance of the fluid at a time the piston moves is changed in accordance with the position of the piston.
Base member for a damper
A damper includes a damper tube (a pressure tube or a reserve tube for a mono-tube or a double tube damper respectively) including a first end and a second end opposite to the first end. The damper includes a base member. The base member includes a cup portion at least partially enclosing the first end of the damper tube, and a sleeve portion extending from and integral with the cup portion. The sleeve portion surrounds a length of the damper tube. The sleeve portion is attached to the damper tube. Further, the damper includes a knuckle engaged with the sleeve portion such that the sleeve portion is disposed between the knuckle and the damper tube.
Base member for a damper
A damper includes a damper tube (a pressure tube or a reserve tube for a mono-tube or a double tube damper respectively) including a first end and a second end opposite to the first end. The damper includes a base member. The base member includes a cup portion at least partially enclosing the first end of the damper tube, and a sleeve portion extending from and integral with the cup portion. The sleeve portion surrounds a length of the damper tube. The sleeve portion is attached to the damper tube. Further, the damper includes a knuckle engaged with the sleeve portion such that the sleeve portion is disposed between the knuckle and the damper tube.
DILATANT FLUID BASED OBJECT MOVEMENT CONTROL MECHANISM
A method for execution by a computing entity includes interpreting a magnetic response from a set of magnetic field sensors to produce a piston velocity and a piston position of a piston associated with a head unit device. The head unit device includes a chamber filled with a shear thickening fluid (STF) that includes a multitude of magnetic nanoparticles. The method further includes determining a shear force based on the piston velocity and the piston position. The method further includes determining a desired response for the STF based on the shear force, the piston velocity, and the piston position. The method further includes generating a magnetic activation based on the desired response for the STF and outputting the magnetic activation to a set of magnetic field emitters positioned proximal to the chamber.
Hydraulic Shock Absorber
A hydraulic shock absorber including a housing and an absorber unit. The absorber unit is movable relative to the housing in the axis direction of an absorber unit middle axis A-A and includes a piston which is arranged on a piston rod and which subdivides the housing into a first and a second working space which is filled with damping fluid.
Hydraulic Shock Absorber
A hydraulic shock absorber including a housing and an absorber unit. The absorber unit is movable relative to the housing in the axis direction of an absorber unit middle axis A-A and includes a piston which is arranged on a piston rod and which subdivides the housing into a first and a second working space which is filled with damping fluid.
DOOR HANDLE RATE CONTROLLER
A door handle rate controller is disclosed. The door handle rate controller includes a damper assembly operatively connected to a door handle such that a movement of the door handle is dampened. The damper assembly may be a piston and cylinder type damper having a piston and a piston rod mounted within a body for reciprocal movement in the body along its longitudinal axis. The damper assembly extends longitudinally from a damper head to an end of the piston rod. A handle side mount and a mounting bracket may be provided to secure the damper assembly to a first and second portion of the door handle. The handle side mount has a first housing bracket pivotally coupled to the end of the piston rod, and a second housing bracket arranged to pivotally couple to the first portion of the door handle. The mounting bracket is defined by an first opening arranged to receive the damper head, and a second opening arranged to receive the second portion of the door handle. The mounting bracket is pivotally coupled to the damper head.
DOOR HANDLE RATE CONTROLLER
A door handle rate controller is disclosed. The door handle rate controller includes a damper assembly operatively connected to a door handle such that a movement of the door handle is dampened. The damper assembly may be a piston and cylinder type damper having a piston and a piston rod mounted within a body for reciprocal movement in the body along its longitudinal axis. The damper assembly extends longitudinally from a damper head to an end of the piston rod. A handle side mount and a mounting bracket may be provided to secure the damper assembly to a first and second portion of the door handle. The handle side mount has a first housing bracket pivotally coupled to the end of the piston rod, and a second housing bracket arranged to pivotally couple to the first portion of the door handle. The mounting bracket is defined by an first opening arranged to receive the damper head, and a second opening arranged to receive the second portion of the door handle. The mounting bracket is pivotally coupled to the damper head.