Grinding Wheel Assembly For Grinding Grooves Into Road Pavement
A grinding wheel assembly for grinding grooves into road pavement has a rotating wheel with a plurality of parallel tracks spaced around the periphery of the wheel. A number of blocks are removably secured to the tracks of the wheel. Bits are removably secured to the blocks in a predetermined pattern to grind parallel grooves in the road pavement as the wheel rotates and the assembly moves along the road pavement. The bits on each block are arranged in a predetermined pattern so that bits on adjacent blocks are not aligned to hit the same groove in the road pavement, but bits on selected non-adjacent blocks are aligned to hit the same groove in the road pavement during rotation of the wheel. Preferably, the bits have a conical, polycrystalline diamond tip and a cylindrical base.
The present application is based on and claims priority to the Applicant's U.S. Provisional Patent Application 62/194,669, entitled “Grinding Wheel Assembly For Grinding Groove Into Road Pavement,” filed on Jul. 20, 2015.
BACKGROUND OF THE INVENTION Field of the InventionThe present invention relates generally to the field of grinding wheels. More specifically, the present invention discloses a grinding wheel assembly for grinding grooves into road pavement for striping and the like.
Statement of the ProblemA variety of devices have been used in the past for grinding or cutting grooves in roadway pavement. For example, this process is often an initial step in striping a roadway. Paint or material having a distinctive, contrasting color is then deposited into the recessed area created by grinding. The recessed area helps to protect the paint for abrasion and weathering. Grinding is also used to remove existing striping prior to repainting or for other road maintenance operations. Finally, grinding can also be used to create a pattern of recesses in the pavement to provide an audible warning of lane departure for the vehicle driver. The roadway pavement is typically asphalt, macadam or concrete, although other types of paving materials are known in the industry.
Conventional pavement grinding machines have a number of significant shortcomings. In particular, they tend to be relatively slow (often traveling a small fraction of a mile per hour), and typically require frequent replacement or maintenance of the bits or grinding surface. These limitations significantly increase the time and expense required for a given job. Therefore, a need exists of a pavement grinding machine that can operate more rapidly and is also durable, so that maintenance or replacement of the bits is not required as frequently.
Solution to the ProblemThe present invention addresses these shortcomings in the prior art by providing a grinding wheel assembly with polycrystalline diamond bits in a unique staggered pattern that allows the grinding wheel to rotate at higher velocities without excess bit wear. These elements not only allow the present device to grind more rapidly, but also significantly increase the useful life of the bits.
SUMMARY OF THE INVENTIONThis invention provides a grinding wheel assembly for grinding grooves in road pavement that employs a rotating wheel having a generally cylindrical shape with a plurality of parallel tracks spaced around the periphery of the wheel and running across the face of the wheel. A plurality of blocks are removably secured to these tracks. Each block has a pattern of holes for removably engaging bits positioned to grind parallel grooves in the road pavement as the wheel rotates. The bit patterns are arranged so that bits on adjacent blocks are not aligned to hit the same groove in the road pavement, but bits on selected non-adjacent blocks are aligned to hit the same groove during rotation of the wheel. Preferably, the bits have a conical, polycrystalline diamond tip and a cylindrical base that allows the bits to be removed from the holes in the blocks, rotated and then reinserted in a different orientation to enable different aspects of the tips to be used during grinding.
These and other advantages, features, and objects of the present invention will be more readily understood in view of the following detailed description and the drawings.
The present invention can be more readily understood in conjunction with the accompanying drawings, in which:
As illustrated in
Blocks 20 are removably secured to the tracks 14 of the wheel 11, as shown in
Bits 30 are removably secured to the blocks 20 in a predetermined pattern to grind parallel grooves 40 in the road pavement as the wheel 10 rotates and the assembly moves along the road pavement. In the preferred embodiment of the present invention shown in
The base 36 of each bit 30 is removably seated in a hole 22 in a block 20 and secured in place by a friction fit, as depicted in
As previously discussed, the bits 30 are secured to the blocks 20 (and in turn to the wheel 11) in a predetermined pattern to grind parallel grooves 40 in the road pavement 50 as the wheel rotates and the assembly moves along the road pavement. But, the bits 30 on each block 20 are arranged so that bits 30 on adjacent blocks are not aligned to hit the same grooves 40 in the road pavement 50. Instead, the bits 30 on selected non-adjacent blocks are aligned to hit the same grooves 40 in the road pavement 50 during rotation of the grinding wheel assembly 10.
In the embodiment of the present invention shown in
The specific embodiment of the block 20 shown in
The above disclosure sets forth a number of embodiments of the present invention described in detail with respect to the accompanying drawings. Those skilled in this art will appreciate that various changes, modifications, other structural arrangements, and other embodiments could be practiced under the teachings of the present invention without departing from the scope of this invention as set forth in the following claims.
Claims
1. A grinding wheel assembly for grinding grooves into road pavement comprising:
- a rotating wheel having a generally cylindrical shape extending about a central horizontal axis with opposing lateral sides, said wheel having a plurality of parallel tracks spaced around the periphery of the wheel;
- a plurality of blocks removably secured to the tracks of the wheel and having a predetermined pattern of holes; and
- a plurality of bits, each bit having a base removably secured in a hole of a block and a tip extending from the hole, said tips of said bits grinding parallel grooves in the road pavement as the wheel rotates and the assembly moves along the road pavement, said bits being capable of being removed, rotated and reseated in said holes to expose different aspects of the tips of the bits to be used in grinding.
2. The grinding wheel assembly of claim 1 wherein the bits on each block are arranged in a predetermined pattern so that bits on adjacent blocks are not aligned to hit the same groove in the road pavement, but bits on selected non-adjacent blocks are aligned to hit the same groove in the road pavement during rotation of the wheel.
3. The grinding wheel assembly of claim 1 wherein the pattern of bits for each block is laterally offset with respect to the pattern of bits for adjacent blocks so that bits on adjacent blocks are not aligned to hit the same groove in the road pavement.
4. The grinding wheel assembly of claim 1 wherein the tracks run parallel to the central axis of the wheel.
5. The grinding wheel assembly of claim 1 wherein the bits comprise a polycrystalline diamond tip.
6. The grinding wheel assembly of claim 1 wherein the bits comprise a conical tip.
7. The grinding wheel assembly of claim 1 wherein the bits comprise a flat tip.
8. The grinding wheel assembly of claim 1 wherein the holes extends through the blocks, and wherein the bits can be removed from the holes by exerting a force against the base of the bit through the hole.
9. The grinding wheel assembly of claim 1 wherein the base of the bit comprises tungsten carbide
10. The grinding wheel assembly of claim 1 wherein the blocks are secured in the tracks with staggered offsets from the lateral sides of the wheel.
11. The grinding wheel assembly of claim 1 wherein the bits seat in a pattern of holes in the blocks having staggered offsets between adjacent blocks.
12. A grinding wheel assembly for grinding grooves into road pavement comprising:
- a rotating wheel having a generally cylindrical shape extending about a central horizontal axis with opposing lateral sides, said wheel having a plurality of parallel tracks spaced around the periphery of the wheel;
- a plurality of bits, each bit having a substantially conical tip and a base; and
- a plurality of blocks removably secured to the tracks of the wheel, each block having a predetermined pattern of holes in the block removably engaging the bases of bits with an aspect of the conical tips positioned to grind parallel grooves in the road pavement as the wheel rotates and the assembly moves along the road pavement; wherein the bits on each block are arranged in a predetermined pattern so that bits on adjacent blocks are not aligned to hit the same groove in the road pavement, but bits on selected non-adjacent blocks are aligned to hit the same groove in the road pavement during rotation of the wheel.
13. The grinding wheel assembly of claim 12 wherein the bits comprise a polycrystalline diamond tip.
14. The grinding wheel assembly of claim 12 wherein bits can be removed from the holes and reinserted into the holes in a different rotational orientation to allow different aspects of the conical tips to be used in grinding.
15. A grinding wheel assembly for grinding grooves into road pavement comprising:
- a rotating wheel having a generally cylindrical shape extending about a central horizontal axis with opposing lateral sides, said wheel having a plurality of parallel tracks spaced around the periphery of the wheel;
- a plurality of blocks removably secured to the tracks of the wheel with staggered offsets from the lateral sides of the wheel, and having a predetermined pattern of holes; and
- a plurality of bits, each bit having a base removably secured in a hole of a block and a tip extending from the hole, said tips of said bits grinding parallel grooves in the road pavement as the wheel rotates and the assembly moves along the road pavement; wherein the bits in each block are arranged so that bits on adjacent blocks are not aligned to hit the same groove in the road pavement, but bits on selected non-adjacent blocks are aligned to hit the same groove in the road pavement during rotation of the wheel.
16. The grinding wheel assembly of claim 15 wherein the bits comprise a polycrystalline diamond tip.
17. The grinding wheel assembly of claim 15 wherein bits can be removed from the holes and reinserted into the holes in a different rotational orientation to allow different aspects of the tips of the bits to be used in grinding.
18. The grinding wheel assembly of claim 15 wherein each block is laterally offset with respect to adjacent blocks so that bits on adjacent blocks are not aligned to hit the same groove in the road pavement.
19. The grinding wheel assembly of claim 15 wherein the bits comprise a conical tip.
Type: Application
Filed: Jul 18, 2016
Publication Date: Jan 26, 2017
Applicant: Arrow Striping & Manufacturing, Inc. (Billings, MT)
Inventors: Steven Gene Stark (Huntley, MT), Donald Branden Lee (Huntley, MT), Thomas Gene Bonner (Billings, MT)
Application Number: 15/212,898