B60G3/12

Air Strut Suspension System For A Self-Propelled High Ground Clearance Product Applicator
20180272826 · 2018-09-27 ·

A system, apparatus and method for controlling the height of a frame of a self-propelled high ground clearance, agricultural product applicator above a ground surface utilize a trailing link suspension system including an extensible air strut, for connecting ground engaging wheels of the applicator to the frame of the applicator. The trailing arm suspension system includes an upper suspension arm attached to the frame, a lower suspension arm providing sole support of a ground engaging wheel attached to the lower arm, and the extensible air strut interconnected between the upper and lower arms. Height of the applicator above the ground surface is controlled by regulating a flow of pressurized air to the air strut, to thereby control extension of the air strut.

Controlling Ground Clearance in a Self-Propelled Agricultural Product Applicator
20180272824 · 2018-09-27 ·

A system, apparatus and method for detecting and controlling the height of a frame of a self-propelled agricultural product applicator above a ground surface utilize a trailing link suspension system including an angular position sensor and extensible air strut, for connecting ground engaging wheels of the applicator to the frame of the applicator. Height of the applicator above the ground surface is determined by measuring relative angular rotation of upper and lower suspension arms of the suspension system about a suspension pivot axis, using the angular position sensor. Height is controlled by regulating a flow of pressurized air to the air strut, to thereby control extension of the air strut in a manner that controls a frame to axle, ride-height, distance of the suspension system.

Arrangement for the vibration decoupling of a motor for motorized two-wheelers, having an engine-mount swing arm

An arrangement for the vibration decoupling of a motor for motorized two-wheelers is provided. In an embodiment of the two-wheeler an engine-mount swing arm is mounted to be rotatable about a first shaft. The first shaft is mounted on the vehicle frame of the two-wheeler to be rotatable about a second shaft by way of a decoupling swing arm. A support rod fitted with damping buffers is provided on the engine-mount swing arm, oriented such that vibrations are decoupled in and against the direction of travel, with vibrations being decoupled in the direction of the cylinder axis and providing good anti-squat behavior.

Low-profile vehicle

System, methods, and other embodiments described herein relate to a low-profile vehicle. In one embodiment, the low-profile vehicle includes a vehicle body having a profile that is substantially continuous around an outer perimeter of the vehicle. The profile is comprised of a fin extending outward from a lower edge of the vehicle body and meeting a ramp of the vehicle body at a concave curve. The ramp continues from the concave curve into a convex curve where the ramp transitions into a top surface of the vehicle body. The profile has an exaggerated s-shape. The low-profile vehicle includes a hatch disposed within the top surface. The vehicle includes a passenger compartment disposed within the vehicle body and accessible through the hatch. The passenger compartment is shaped to provide for a passenger to occupy the vehicle in a substantially lying down position.

Vehicle rear suspension and methods of operation
09902227 · 2018-02-27 ·

A vehicle rear suspension system is provided which determines the movement of the rear wheels in relation to the chassis of the vehicle as the vehicle drives over irregular surfaces. Different components of a rear suspension act to limit or control the movement of the rear differential along specific directions or axes.

Steering unit
09707999 · 2017-07-18 · ·

A steering unit includes a guide unit and a support unit having a second fastening section fixed to a first fastening section of the guide unit and a load-bearing section accommodating a spring unit, a second plane is oriented orthogonally with respect to a width of the second fastening section, the load-bearing section is asymmetrical with respect to the second plane, the guide unit extends predominantly along a first plane, wherein, in an assembled state, the first plane is oriented to the second plane, wherein the first plane is oriented orthogonally with respect to a pivot axis of a pivotable mounting of the guide unit in a bearing section, wherein, in a mounted state, at least one fastening structure is arranged in the first plane, and wherein the first plane runs centrally through the bearing section of the guide unit.

UNIVERSAL WISHBONE TRAILING ARM
20170050483 · 2017-02-23 ·

A universal wishbone trailing arm and methods are provided for coupling a wheel to a vehicle chassis. The universal wishbone trailing arm comprises a wheel hub that fastenably receives the wheel. A cylindrical axle support supports one or more roller bearings whereby the wheel hub is rotatable. A first swing arm and a second swing arm extend forwardly from a joined swing arm. The cylindrical axle support is coupled to a rear of the joined swing arm. A first chassis mount hingedly couples the first swing arm to the vehicle chassis. A second chassis mount hingedly couples the second swing arm to an articulated mount which is configured to couple the second swing arm to the vehicle chassis. The articulated mount cooperates with the first second swing arms to change the camber of the wheel, such that a tracking of the wheels remains substantially unchanged during traveling over rough terrain.

Torsion beam, torsion beam assembly, and torsion beam type suspension system

A torsion beam which is used in a suspension system of an automobile which is provided with a pair of arm members which extend in a front-rear direction of the automobile and are designed to be connected to a chassis of the automobile so as to be able to swing and to have wheels attached rotably to them is disclosed. The torsion beam is formed with a recess which extends in the longitudinal direction whereby that torsion beam has first and second leg parts in a plane vertical to the longitudinal direction and exhibits a substantially V-shaped or substantially U-shaped cross-sectional shape. The torsion beam is provided with connection parts which are provided at the two ends of that torsion beam and are connected to the arm members, a fixed shape part which is provided at a center part in the longitudinal direction of that torsion beam, and asymmetric shape parts which are provided between that fixed shape part and the connection parts. At the asymmetric shape parts, the depth of the recess becomes gradually deeper from the connection parts toward the fixed shape part and the first leg part has a larger width dimension than the width dimension of the second leg part.