The present invention relates to a tow cable kit for a vehicle.
It is known to install tow cable kits on vehicles so that the vehicle can be towed. For example, John Deere provides a “hammer strap” type tow cable kit which is mounted by drilling holes into the drawbar. The hammer strap design changes the stiffness of the drawbar which affects the ability of the Autoload system to sense load. Also, many vehicles have a tow cable kit installed at the dealership. For some vehicles, the tow cable is connected to the front of the chassis. High towing forces are thus transmitted through the vehicle frame, which must be reinforced to handle this load. For example, certain vehicles have a large ring which is attached to a large structure, which is fixed to the frame.
Accordingly, an object of this invention is to provide a vehicle tow cable kit which does not adversely effect functioning of an Autoload system.
A further object of the invention is to provide such a tow cable kit which is easy to service.
A further object of the invention is to provide such a tow cable kit which does not require a large structure or a reinforced frame.
These and other objects are achieved by the present invention, wherein a tow cable kit includes a pin support member for attaching to a frame of the vehicle. The pin support member includes an upper plate and a lower plate. Each plate has a front bore and a rear bore. The front bores receive a front towing pin, and the rear bores receive a rear towing pin. The front towing pin is received by a towing cable, the rear towing pin is received by a drawbar. A floater plate is spaced apart from the pin support member and is coupled to both towing pins. The floater plate has a pair of spaced apart bores for receiving the towing pins and for protecting snap rings which are mounted on the towing pins.
Referring to
The lower ends of pins 32 and 34 are received by a floater plate 50. As best seen in
With two pins 32 and 34 coupled together by floater plate 50, high loads applied to the tow cable 42 will be shared and transmitted through both pins 32 and 34. The snap rings 64 and 66 are enclosed in bores and protected by the body of the floater plate 50. This ensures that the pins do not slip or unwind, and that they will not be removed by debris. The pins can float and can thereby move up when contacting large rocks or heavy earth, minimizing failures. This design requires no modifications be made to standard drawbar support or frame parts.
While the present invention has been described in conjunction with a specific embodiment, it is understood that many alternatives, modifications and variations will be apparent to those skilled in the art in light of the foregoing description. Accordingly, this invention is intended to embrace all such alternatives, modifications and variations which fall within the spirit and scope of the appended claims.