Patent classifications
B60G2200/322
Frame, in particular of a universal carrier
A frame, in particular of a universal carrier, which includes a chassis of the frame, a left axle with two portal suspensions at the ends of the left axle, a right axle with two portal suspensions at the ends of the right axle, and the double-sided stabilizing lever. The double-sided stabilizing lever is pivotally mounted on the chassis of the frame in the transverse direction. The axles are pivotally mounted on the chassis of the frame in the longitudinal direction. The double-sided stabilizing lever is connected to the left axle and the right axle and is arranged between them transversely.
Vehicle
A vehicle includes a frame, and at least one front and rear wheel. The total number of front and rear wheels is at least three. The vehicle includes a mechanism for driving at least one of the front and rear wheels, a seat for a driver, and at least one fall prevention element to prevent, in a closed position of the fall prevention element, a driver from falling off the seat. In an open position of the fall prevention element, a driver can freely take a seat from the outer side of the vehicle via the space which, in the closed position, is occupied by the fall prevention element, or can step out of the vehicle; the fall prevention element slides between the open and closed positions.
VEHICLE SUSPENSION SYSTEM, CONVEYOR SYSTEM, AND AUTONOMOUS VEHICLES INCORPORATING THE SAME
A vehicle that includes a first rotatable frame that includes a first wheel assembly and a second wheel assembly. The vehicle also includes a second rotatable frame that includes a third wheel assembly and a fourth wheel assembly. The vehicle further includes a base frame configured to support a weight-bearing load. The vehicle further includes an axle member engaging the first rotatable frame, the second rotatable frame, and the base frame, wherein the first rotatable frame is rotatable about the axle member relative to the base frame and independent of the second rotatable frame, and the second rotatable frame is rotatable about the axle member relative to the base frame and independent of the first rotatable frame.
TELEHANDLER AND METHOD
A telehandler comprising: a chassis; an axle supporting the chassis; a pivotal connection between the axle and the chassis; and a chassis positioning system. The pivotal connection is configured to enable rotation of the chassis relative to the axle for varying a chassis-axle tilt angle defined between a longitudinal axis of the axle and the chassis. The chassis positioning system comprises: a chassis angle sensor configured to measure an angular position of the chassis relative to gravity; an actuator configured to rotate the chassis relative to the axle at the pivotal connection; and a control system configured, in a first mode, to control the actuator to thereby control the chassis-axle tilt angle based on the measured angular position of the chassis.
Axle oscillation stop for construction machine
An axle oscillation stop for a construction machine includes a body portion defining a first aperture. The axle oscillation stop also includes a first plate that defines a first through-aperture. The axle oscillation stop further includes a second plate that defines a second through-aperture. The axle oscillation stop includes a dowel pin adapted to removably couple the body portion with a frame of the construction machine. The dowel pin is at least partially receivable within the first aperture. The axle oscillation stop also includes a first fastening device adapted to removably couple the first plate with the frame. The first fastening device is at least partially receivable within the first through-aperture. The axle oscillation stop further includes a second fastening device adapted to removably couple the second plate with the frame. The second fastening device is at least partially receivable within the second through-aperture.
WORK VEHICLE AXLE DEVICE
Work vehicle axle device includes a wheel drive case utilizing a centrally disposed vertically extending first coupling portion, a centrally disposed vertically extending second coupling portion spaced from the first coupling portion and an input shaft located below an upper end of either the first or second coupling portions and being configured to transmit rotational power to wheels. The first and second coupling portions are configured to pivotally mount to the wheel drive case to a vehicle body of the work vehicle in a manner that allows the wheel drive case to pivot about an axis that, when viewed from above, is at least one of parallel to a front to back direction of the vehicle body and parallel to a centrally disposed front to back axis of the vehicle body.
Axle Tie Rod
An axle tie rod adapted to be secured to an axle tube of a utility vehicle includes a connecting element and at least one link element, wherein the connecting element has a first connecting section in which a welded connection with the link element can be produced, wherein the connecting element has a second connecting section in which a welded connection with an axle tube can be produced, and wherein the second connecting section is configured to engage around the axle tube.
FRAME, IN PARTICULAR OF A UNIVERSAL CARRIER
A frame, in particular of a universal carrier, which &includes a chassis of the frame, a left axle with two portal suspensions at the ends of the left axle, a right axle with two portal suspensions at the ends of the right axle, and the double-sided stabilizing lever. The double-sided stabilizing lever is pivotally mounted on the chassis of the frame in the transverse direction. The axles are pivotally mounted on the chassis of the frame in the longitudinal direction. The double-sided stabilizing lever is connected to the left axle and the right axle and is arranged between them transversely.
Axle assembly for a heavy-duty vehicle and heavy duty-vehicle having at least one such axle assembly
The invention relates to an axle assembly and a heavy-duty vehicle having such an axle assembly, which comprises a pivot bearing having a substantially vertically extending steering axis of rotation, a bogie rotatably arranged about the steering axis of rotation, a rocker mounted on the bogie so as to be pivotable about a substantially horizontal pivot axis, a wheel carrier operatively connected to the rocker having at least one wheel rotatably mounted thereon about a wheel axis of rotation, the wheel axis of rotation extending substantially horizontally and, when driving straight ahead, substantially transversely to the direction of travel, and a pneumatically actuatable power device, which is arranged between the rocker and the bogie.
Rear axle assembly designed to fit within rear axle envelope
A rear axle assembly designed to fit within a predefined rear axle envelope of a transportation vehicle. The rear axle assembly comprising first and second double wheel hubs each supporting a pair of tires, a rear axle offset with respect to a central axis of the rear axle assembly, a rear axle input for receiving a drive input, first and second portal housings which facilitate respectively connecting the rear axle with the first and the second double wheel hubs, a four-point control arm for connecting the rear axle to a chassis, first and second spring carriers each carrying smaller and larger diameter air bellows, first and second longitudinal arms which interconnected the rear axle to the chassis, and first and second shock absorbers each located generally at or adjacent to the central axis and radially between the first double wheel hub and the first spring carrier.