B60G2202/242

Top Mount Seal Pack Assembly for Air Shock
20200062065 · 2020-02-27 ·

Assemblies, systems, devices, and methods for disassembling an original equipment manufacturer (OEM) air shock/air spring and reassembling and inexpensively remanufacturing the air shock/air spring with a novel seal pack in the top mount. The novel seal pack keeps compressed air from leaking from the air shock/air spring and allows the damper rod to move axially and rotationally and shift side to side in the top mount. The seal pack can include a seal pack with an outer groove, a seal pack X-ring for fitting inside of the seal pack, and an O-ring for fitting into the outer groove of the seal pack.

INTERNAL BYPASS SHOCK ABSORBER
20200049221 · 2020-02-13 · ·

A shock absorber is provided that includes a shock body and a shaft assembly. The shock body has an inner chamber. The inner chamber is defined by a cylindrical interior surface. At least one groove is formed in the interior surface within at least one select length of the shock body. A piston of the shaft assembly is received within the inner chamber of the shock body. The piston includes valving to allow dampening matter that is received within the inner chamber to pass through the piston to allow the piston to move within the inner chamber. The at least one groove that is formed within the interior surface is configured to allow at least some of the dampening matter to bypass the valving of the piston to allow the piston to move through the at least one select length with less resistance.

SELF-STABILIZING VEHICLE AND CONTROL METHOD THEREOF
20200023913 · 2020-01-23 · ·

A self-stabilizing vehicle includes a mass gyroscope which is fixed at an occupant compartment chassis corresponding to a portion where occupants sit. The occupant compartment portion may tilt outwards in response to the centrifugal force. If the vehicle has three or more wheels, the load is evenly distributed on the left wheel and the right wheel which move oppositely up and down about an effectively centrally-mounted shaft pin. Further, the present disclosure proposes a method for operating the self-stabilizing vehicle. According to the self-stabilizing vehicle and the operating method thereof, a vehicle having a narrow body may be used. When the vehicle undergoes external forces such as the centrifugal force and the crosswind, the occupant compartment can maintain the vertical stability even though the wheels may slide sideways.

Inline shock absorber with gas spring for a cycle wheel suspension assembly
10526040 · 2020-01-07 · ·

A trailing link multi-bar suspension assembly for a cycle having improved stability includes a first arm having a first arm fixed pivot and a first arm shock pivot. A shock link has a shock link fixed pivot and a shock link floating pivot. A shock absorber has an inline configuration, a gas spring, a first shock mount, and a second shock mount. A wheel carrier has a wheel carrier first pivot and a wheel carrier second pivot spaced apart from one another, and a wheel mount that is adapted to be connected to a wheel. A control link has a control link floating pivot and a control link fixed pivot, the control link floating pivot being pivotably connected to the wheel carrier second pivot, and the control link fixed pivot being pivotably connected to the first arm control pivot.

Low-floor electric axle assembly

A low-floor electric axle assembly including: an axle housing, two hub motors, two planetary gear reducers, two hubs, a brake system, two C-shaped beams, and a suspension system. Mechanical mounting of the suspension system is compatible with a conventional axle. The axle housing has a left and right symmetrical dumbbell-shaped structure configured to bear a weight of a vehicle. The hub motors are inner rotor type motors and are separately arranged at two ends of the axle housing left and right symmetrically. The hub motors are arranged coaxially with two wheels respectively. Two hub motor rotors are connected to the planetary gear reducers respectively. Each of the planetary gear reducers is a single-stage planetary gear reducer. A sun gear of each of the planetary gear reducers receives power outputted by each of the hub motor. Two planetary gear reducer housings are power output ends connected to two rims respectively.

DAMPING AIR SPRING WITH SUBSTANTIALLY FIXED VOLUME
20190351727 · 2019-11-21 ·

An air spring with damping characteristics for a suspension assembly of a heavy-duty vehicle includes a bellows chamber, a piston chamber, an intermediate chamber, and a first and second means for providing restricted fluid communication. The intermediate chamber is disposed at least partially within the bellows chamber and operatively connected to the bellows chamber and the piston chamber. The first means for providing restricted fluid communication is located between the bellows chamber and the intermediate chamber. The second means for providing restricted fluid communication is located between the piston chamber and the intermediate chamber. The first and second means for providing restricted fluid communication provide damping characteristics to the air spring during operation of the heavy-duty vehicle.

PNEUMATIC CONTROL SYSTEM FOR VEHICLES AND OTHER LOADED STRUCTURES
20190337349 · 2019-11-07 ·

A load isolation device, or suspension assembly of a vehicle, including a damping air spring and a pneumatic control system. The damping air spring is operatively connected to a structure to be isolated and extends from a base operatively connected to or operatively disposed on a source of vibration. The pneumatic control system includes a height control valve connected to the damping air spring and is capable of being actuated between a first operating state and a second operating state. The height control valve enables the damping air spring to maintain the structure at a primary height in the first operating state and at a secondary height different from the primary height in the second operating state.

HEAVY-DUTY VEHICLE AXLE/SUSPENSION SYSTEM WITH OPTIMIZED DAMPING
20190337346 · 2019-11-07 ·

An axle/suspension system for a heavy-duty vehicle includes a suspension assembly, an axle, and a damping means. The suspension assembly is operatively connected to the heavy-duty vehicle. The axle is operatively connected to the suspension assembly. The damping means is operatively connected to and extends between the suspension assembly and the heavy-duty vehicle. The axle/suspension system has a motion ratio of between about 1.4 to about 1.7. A method for optimizing damping of an axle/suspension system of a heavy-duty vehicle includes the steps of: calculating a curve representing a damping energy relating to load on a damping air spring; calculating a curve representing a damping energy relating to air flow velocity through at least one opening of the air spring; calculating an optimized motion ratio by determining an intersection of the curves; altering the geometry of the axle/suspension system to provide the axle/suspension system with the optimized motion ratio.

Adjustable air chamber for a shock
11970041 · 2024-04-30 · ·

A volume adjustable air chamber for a shock assembly is disclosed herein. The adjustable air chamber assembly includes a first air chamber and a second air chamber in fluid communication via a flow path. A check valve is coupled with the flow path, the check valve that allows the second air chamber to be fluidly coupled with or fluidly isolated from the first air chamber, such that the available volume of air for said first air chamber can be modified to provide different damping characteristics.

Damper unit for a chassis of a vehicle with levelling

The invention relates to a damper unit (10) for a chassis (100) of a vehicle with levelling, comprising a hydraulic cylinder (1) having a container tube (2) which is filled with a damper fluid and in which a piston (3) is movably mounted and separates an upper container space (21) from a lower container space (22). The piston (3) comprises a first valve (41) through which the damper fluid flows when the piston (3) moves in a first direction A. The damper unit (10) further comprises an accumulator (5) and a check valve (6), wherein the accumulator (5) is connected to the container tube (2) via the check valve (6) in such a manner that, when the piston (3) moves in at least one direction, damper fluid is pumped through the check valve (6) into the accumulator (5).