Patent classifications
B62D55/28
Track shoe pad assembly and insert element structure of track rubber pad
An insert element structure of a track rubber pad, which is connected to a track shoe plate of a caterpillar vehicle by at least one screw member, the insert element structure of the track rubber pad includes a rubber pad, at least one insert element, and at least two fasteners. The rubber pad is detachably connected to the track shoe plate. Each of two ends of the at least one insert element includes at least one hole, wherein the at least one insert element is cladded in the at least one projection of the rubber pad. Each of the at least two fasteners is passed through and disposed in each of the holes of the at least one insert element, wherein each of the at least two fasteners includes an abutting portion, an opening portion and a threaded portion.
Track shoe pad assembly and insert element structure of track rubber pad
An insert element structure of a track rubber pad, which is connected to a track shoe plate of a caterpillar vehicle by at least one screw member, the insert element structure of the track rubber pad includes a rubber pad, at least one insert element, and at least two fasteners. The rubber pad is detachably connected to the track shoe plate. Each of two ends of the at least one insert element includes at least one hole, wherein the at least one insert element is cladded in the at least one projection of the rubber pad. Each of the at least two fasteners is passed through and disposed in each of the holes of the at least one insert element, wherein each of the at least two fasteners includes an abutting portion, an opening portion and a threaded portion.
CRAWLING WELDING ROBOT
The invention relates to a welding technical field and provides a crawling welding robot. The crawling welding robot includes a vehicle chassis and two crawler wheels connected to two opposite sides of the vehicle chassis, respectively, wheel carriers of two crawler wheels are movably connected with the vehicle chassis. In this way, when the crawling welding robot moves on a non-planar surface for welding, the two crawler wheels can freely adjust its posture relative to the vehicle chassis to adapt to the surface for welding and improve a degree of fit between the two crawler wheels and the surface for welding, making the moving direction of the crawling welding robot easier to be controlled and reducing a probability of the crawling welding robot slipping or falling from the surface for welding.
Device to enhance the traction of a tracked vehicle
A device for use with a continuous track of a tracked vehicle to enhance the traction of the vehicle. The device has an elongate body having a surface and a longitudinal axis. A bracket is arranged to secure the elongate body to the continuous track. A first ground engaging feature and a second ground engaging feature are operatively attached to the elongate body and project beyond the surface of the elongate body. The first ground engaging feature has a plurality of teeth arranged in a line and the second ground engaging feature has a plurality of teeth arranged in a line. The line of the first ground engaging feature extends at an angle relative to the longitudinal axis of the elongate body and at an angle relative to the line of the second ground engaging feature.
Device to enhance the traction of a tracked vehicle
A device for use with a continuous track of a tracked vehicle to enhance the traction of the vehicle. The device has an elongate body having a surface and a longitudinal axis. A bracket is arranged to secure the elongate body to the continuous track. A first ground engaging feature and a second ground engaging feature are operatively attached to the elongate body and project beyond the surface of the elongate body. The first ground engaging feature has a plurality of teeth arranged in a line and the second ground engaging feature has a plurality of teeth arranged in a line. The line of the first ground engaging feature extends at an angle relative to the longitudinal axis of the elongate body and at an angle relative to the line of the second ground engaging feature.
SHROUDS FOR GROUSER PROTECTORS IN TRACK SHOES AND GROUSER SHROUD INVENTORY
A shroud for a track shoe grouser protector includes an elongate shroud body having weld holes formed in a first shroud leg and a second shroud leg attached to a base in the elongate shroud body. The shroud may have a fore to aft profile having the form of a flat-crowned arch with the shroud legs flared outward to form a grouser opening for positioning the shroud upon a track shoe grouser in a ground-engaging track system. An inventory of shrouds includes long shrouds and short shrouds positionable in a plurality of different assembly combinations to shield grousers in track shoes having a range of sizes.
VEHICLE TRACK PAD ASSEMBLY AND METHOD
A track pad assembly for a continuous track vehicle includes a track plate and a polymer pad. The track plate includes a plate body having a tread surface, and one or more mesh arrays attached to the tread surface of the plate body. The polymer pad is attached to the mesh array(s) and to interstitial areas of the tread surface defined by cells of the mesh array(s), e.g., by press bonding in conjunction with an adhesive. The polymer pad may be made of an elastomer such as hardened rubber.
VEHICLE TRACK PAD ASSEMBLY AND METHOD
A track pad assembly for a continuous track vehicle includes a track plate and a polymer pad. The track plate includes a plate body having a tread surface, and one or more mesh arrays attached to the tread surface of the plate body. The polymer pad is attached to the mesh array(s) and to interstitial areas of the tread surface defined by cells of the mesh array(s), e.g., by press bonding in conjunction with an adhesive. The polymer pad may be made of an elastomer such as hardened rubber.
Systems, Devices, and/or Methods for Managing Vehicle Tracks
Certain exemplary embodiments can provide a system comprising a vehicle, a track, and a set of cleats. The track is coupleable to the vehicle and the set of cleats is coupleable to the track. Each cleat comprises a first portion and a second portion. The cleat can be coupled to the track via coupling the first portion to the second portion.
Systems, Devices, and/or Methods for Managing Vehicle Tracks
Certain exemplary embodiments can provide a system comprising a vehicle, a track, and a set of cleats. The track is coupleable to the vehicle and the set of cleats is coupleable to the track. Each cleat comprises a first portion and a second portion. The cleat can be coupled to the track via coupling the first portion to the second portion.