This invention is a device for attachment to the continuous track of a tracked vehicle including, but not limited to, heavy construction equipment, to improve traction in mud, snow or icy conditions.
Continuous tracks are provided on heavy construction equipment to improve weight distribution and enhance traction in off-road conditions. Although continuous tracks may be constructed from metal, rubber continuous tracks are also common.
Under certain conditions, tracked heavy equipment cannot maintain good contact with the ground. For example, on steeper slopes or slopes that are covered in snow and ice, tracks cannot provide adequate grip and skidding of the vehicle may occur. This affects the efficiency and effectiveness of the equipment and may also lead to safety issues, both to the driver and others on the job site.
It is known to insert studs into the exterior surface of a track, particularly a rubber track, to improve its gripping characteristics; however, these efforts provide limited improvement and often cause damage the continuous track. In addition, studded tracks restrict use of the vehicle to the winter months.
It is also known to provide a removable cleat that is temporarily attached to the track to provide supplemental gripping characteristics. Generally speaking, these devices are in the form of a fixed bar that extends the width of the track. Means are provided to secure the bar to the track, typically in the form of chains or hooks that extend from the end of the bar and lock it to the underside of track. These devices are difficult to install and remove and are known to fail during use. Failure is often due to the severe stresses the device is subjected to during use. Further, prior art cleats accumulate snow, ice and debris which reduces the gripping characteristics of the cleat. In addition, debris can damage the cleat and lead to failure.
A traction cleat for the track of a tracked vehicle, the cleat comprising an elongated support member having first and second opposite ends and a central portion extending therebetween, the first and second ends are larger in cross-section than that of the central portion so as to provide an open region that extends between the support member and the track to which it is to be attached, a pair of mounting flanges, a separate one of the mounting flanges extends from each of the support member first and second ends and at least one of which includes mounting hardware to selectively secure the cleat to a track, and a series of individual traction members, the traction members are disposed along the length of the support member other than at the central portion thereof whereby the open region is adapted to expel ice or snow that might otherwise accumulate between the cleat and the track to which it is attached.
The traction cleat TC in
Providing the support member 2 and the end portions 4, 6 with the rounded exterior surface shown in
For example, the support bar may be in the form of a single bar without exterior rounded reinforcing bars 10, 12. In this variation the support member would be cylindrical in cross-section throughout from one end to the other but also be provided with a larger diameter at the end portions relative to the central portion for reinforcement purposes. The larger diameter end portions replace the need for securing separate reinforcing bars 10, 12 to the support member or cross bar 2.
As noted earlier, a support member 2 that is not provided with a rounded exterior surface is within the scope of the present invention. For example, the cross-section of the support member 2 may have a shape and width that substantially matches the shape and width of the trough region 34 of the track, e.g. a trapezoid. Other variations are within the scope of the present invention.
The support member and reinforcing bars are preferably solid throughout and constructed from cold rolled steel. It is preferable to use cold rolled steel because it has a tensile strength sufficient to allow the support member 2 to slightly bend during use as the cleat is subjected to weight and pressure but will also allow it to return to its original shape following use. Other metal materials are within the scope of the present invention depending upon the nature of use of the device and the size and shape of the tread and the vehicle.
Turning to
The interior mounting flange 14 is shown to include a fixed post member 18 that extends inwardly of the cleat and generally parallel to the longitudinal axis of the cleat. The fixed post member 18 is preferably short enough so that when the clamp is subjected to excessively harsh conditions, it will detach without causing damage to the continuous track.
The exterior mounting flange 16 has a shape and dimension similar to that of the exterior mounting flange but includes an aperture 20 for receiving mounting assembly 22. This is best shown in
The mounting assembly as set forth above enables the cleat to be installed using conventional tools and be easily installed or removed at a job site or on short notice. In a preferred embodiment, the spacer 24 has a 1 1/16″ outside diameter, a ⅝″ inside diameter and a ¼″ wall thickness. The bolt 26 is a grade 8⅝″ hex bolt and the nut 28 is a ⅝″ Nylock USS11. As is apparent, other mounting means are within the scope of the present invention so long as it enables the cleat to be readily attached to the continuous tread and it is adapted to withstand the mechanical stresses applied to it during use.
Turning to
An alignment indicator (not shown) may be provided on the cleat to indicate which one of the two continuous tracks of the vehicle it is adapted to be secured to. The interior mounting flange having the fixed post member is adapted to be secured to the side of the continuous track that is interior of the vehicle whereas the mounting flange 16 having the removable mounting assembly is adapted to be secured to the side of the track that is exterior of the vehicle. The alignment indicator may take the form of a single weld spot provided on cleats that will be secured to the right continuous track of the vehicle whereas a double weld spot may be provided on a cleat adapted to be secured to the left continuous track of a vehicle. As is apparent, other indicator means such as coloration are within the scope of the present invention.
Turning to
During use, the rounded support member 2 permits the cleat to slightly rotate or oscillate within the trough 34 of the track. This movement allows any debris that might otherwise accumulate against the cleat during use to be expelled through the central portion.
As noted earlier, the shape, number, angle and alignment of the traction bars 30 may vary to adapt the cleat to specific conditions or uses. This is best illustrated in
While this invention has been described as having a preferred design, it is understood that it is capable of further modifications, uses and adaptations, both in whole and in part, while following the general principle of the invention and including such departures from the present disclosure as is known or customary practice in the art to which this invention pertains, and as may be applied to the central features of this invention.
Number | Name | Date | Kind |
---|---|---|---|
1258683 | Houghton | Mar 1918 | A |
2701169 | Cannon | Feb 1955 | A |
2808094 | Marchionda | Oct 1957 | A |
2954086 | Butman | Sep 1960 | A |
3245451 | Gellman | Apr 1966 | A |
3291180 | Gellman | Dec 1966 | A |
4813466 | Forsyth | Mar 1989 | A |
5769511 | Hattori | Jun 1998 | A |
RE36025 | Suzuki | Jan 1999 | E |
6557954 | Hattori | May 2003 | B1 |
7901015 | Anderson | Mar 2011 | B1 |
8424981 | Stratton, Jr. | Apr 2013 | B1 |
8672064 | Korus et al. | Mar 2014 | B2 |
20130049452 | Burling | Feb 2013 | A1 |
20140175865 | Korus et al. | Jun 2014 | A1 |
Number | Date | Country |
---|---|---|
3399871 | Aug 2000 | JP |
2002264855 | Sep 2002 | JP |
3869833 | Sep 2005 | JP |
Number | Date | Country | |
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20170158268 A1 | Jun 2017 | US |