Patent classifications
B62D53/02
TRACTOR AND VEHICLE EQUIPPED WITH TRACTOR
A tractor that includes: a driver equipped with a left and right pair of driving wheels; a vehicle main body provided between the left and right pair of driving wheels; a periphery information detection sensor provided at the vehicle main body and detecting periphery information; a controller provided in the vehicle main body and controlling autonomous traveling by the driver in accordance with the periphery information detected by the periphery information detection sensor; and a first coupler provided at the vehicle main body and configured to be coupled to a trailer.
TRACTOR AND VEHICLE EQUIPPED WITH TRACTOR
A tractor that includes: a driver equipped with a left and right pair of driving wheels; a vehicle main body provided between the left and right pair of driving wheels; a periphery information detection sensor provided at the vehicle main body and detecting periphery information; a controller provided in the vehicle main body and controlling autonomous traveling by the driver in accordance with the periphery information detected by the periphery information detection sensor; and a first coupler provided at the vehicle main body and configured to be coupled to a trailer.
INSPECTION ROBOTS WITH CONFIGURABLE INTERFACE PLATES
Inspection robots with configurable interface plates are described. An example inspection robot may have a housing with at least three removable interface plates, each removable interface plate having a coupling interface for an electronic component on a first side, and coupled to at least one of a plurality of electronic boards on a second side. The example inspection robot may further include a drive module configured to couple to at least one of the removable interface plates, and a payload configured to couple to at least one of the removable interface plates. The example inspection robot may further include a means for operating the inspection robot in response to the drive module coupled to one of the removable interface plates, and the payload coupled to any other one of the removable interface plates.
Hinged vehicle chassis
A robotic vehicle chassis is provided. The robotic vehicle chassis includes a first chassis section, a second chassis section, and a hinge joint connecting the first and second chassis sections such that the first and second chassis sections are capable of rotation with respect to each other in at least a first direction. The vehicle includes a drive wheel mounted to one of the first and second chassis sections and an omni-wheel mounted to the other of the first and second chassis sections. The omni-wheel is mounted at an angle orthogonal with respect to the drive wheel. The hinge joint rotates in response to the curvature of a surface the vehicle is traversing.
Hinged vehicle chassis
A robotic vehicle chassis is provided. The robotic vehicle chassis includes a first chassis section, a second chassis section, and a hinge joint connecting the first and second chassis sections such that the first and second chassis sections are capable of rotation with respect to each other in at least a first direction. The vehicle includes a drive wheel mounted to one of the first and second chassis sections and an omni-wheel mounted to the other of the first and second chassis sections. The omni-wheel is mounted at an angle orthogonal with respect to the drive wheel. The hinge joint rotates in response to the curvature of a surface the vehicle is traversing.
Arrangement and method for enabling rotation movement between tandem or caterpillar axle and body of vehicle
An arrangement and method are provided for enabling rotation movement between a tandem or caterpillar axle and a body of a vehicle. This type of vehicle includes at least one body part that is provided with a tandem or caterpillar axle. At least one body part includes a main body and an auxiliary body connected to it to rotate around the longitudinal axis of the vehicle or an essentially parallel axis thereto. The tandem or caterpillar axle is connected substantially rigidly to the main body, and the body part has at least one actuator for controlling the rotation movement between the main body and auxiliary body. In this way, changes in the position and motion status of the auxiliary body, especially in relation to the rotation around the longitudinal axis of the vehicle, are arranged to cause in the actuator a pushing or pulling motion that steers the auxiliary body to a rotation movement for the purpose of arranging the auxiliary body to a substantially horizontal position.
Arrangement and method for enabling rotation movement between tandem or caterpillar axle and body of vehicle
An arrangement and method are provided for enabling rotation movement between a tandem or caterpillar axle and a body of a vehicle. This type of vehicle includes at least one body part that is provided with a tandem or caterpillar axle. At least one body part includes a main body and an auxiliary body connected to it to rotate around the longitudinal axis of the vehicle or an essentially parallel axis thereto. The tandem or caterpillar axle is connected substantially rigidly to the main body, and the body part has at least one actuator for controlling the rotation movement between the main body and auxiliary body. In this way, changes in the position and motion status of the auxiliary body, especially in relation to the rotation around the longitudinal axis of the vehicle, are arranged to cause in the actuator a pushing or pulling motion that steers the auxiliary body to a rotation movement for the purpose of arranging the auxiliary body to a substantially horizontal position.
Articulated/swivel joint for the articulated connection between a rear section and a front section of a construction machine
An articulated/swivel joint for the articulated connection between a rear section and a front section of a construction machine includes a joint mechanism assigned to a swivel-stop arrangement for limiting the swivel movement of a front joint part in relation to a rear joint part. The swivel-stop arrangement includes a first swivel stop for predetermining a maximum amount of swivel deflection during deflection of the front joint part in relation to the rear joint part in a first swivel-movement direction and a second swivel stop for predetermining a second maximum amount of swivel deflection during deflection of the front joint part in relation to the rear joint part in a second swivel-movement direction. When an articulated movement is performed, the maximum swivel-deflection range decreases as the amount of articulated deflection increases, starting from a neutral position of articulation of the front joint part in relation to the rear joint part.
Articulated vehicle and articulation joint arrangement for such a vehicle
The present invention relates to an articulated pendulum joint for an articulated vehicle, especially a construction machine. It comprises a front connection element for connecting a front frame part of the articulated vehicle, a rear connection element for connecting a rear frame part of the articulated vehicle, and an articulation joint, via which the front connection element and the rear connection element are mutually connected in a pivotable manner relative to each other about a steering axis (A.sub.S). A pendulum joint is further provided, via which the front connection element and the rear connection element are mutually connected in a twistable manner relative to each other about a pendulum axis (A.sub.T), wherein the steering axis (A.sub.S) of the articulation joint is inclined about an acute angle α relative to the pendulum axis (A.sub.T). The present invention further relates to an articulated vehicle, especially an articulation-steered construction machine, comprising a front frame part and a rear frame part on which driving means are respectively arranged and on which a joint arrangement of the type described above is provided.
DETACHABLE MULTI-AXLE ASSEMBLY
A multi-axle assembly includes an axle frame configured to move in a first travel configuration, a first axle assembly attached to the axle frame and including a first axle, and a second axle assembly attached to the axle frame and including a second axle. A common axis of rotation passes through both the first axle and the second axle in the first travel configuration. A first axle mount that operably couples the first axle assembly to the axle frame, and a second axle mount that operably couples the second axle assembly to the axle frame. Both the first axle assembly and the second axle assembly may be repositioned to a second travel configuration in which the first axle and the second axle are rotationally offset from the common axis of rotation.