Patent · US2020138179A1 · A1 · US
Rotary Brush and Rotary Brush Wire Configurations
- (11) Publication number
- US2020138179A1
- (21) Application number
- 16/735,689
- (22) Filing date
- 2020-01-06
- (30) Priority date
- 2017-06-05
- (43) Publication date
- 2020-05-07
- (52) CPC
- (73) Assignee
- OSBORN LLC
- (54) Title
- Rotary Brush and Rotary Brush Wire Configurations
- (57) Abstract
A rotary wire brush, such as a wheel brush, e.g., double-stringer or dually brush, cup brush, bevel brush, or knotted end brush, composed of knotted brush wire tufts of multistrand construction each having at least a plurality of brush wire strands, preferably at least a plurality of pairs of, i.e., at least three, strands each formed of at least a plurality, preferably at least a plurality of pairs of, i.e., at least three, wires. The wires forming strands are twisted, braided, or twisted and braided, and the strands that form tufts are twisted, braided, or twisted and braided. A preferred brush employs a center disc, e.g., hub, with radially offset tuft anchor holes, which can have different sizes, from which twist knot tufts, which also can have different sizes, can outwardly extend from the disc different distances by being configured with an offset trim preferably having different trim lengths
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Claims (1)
- A rotary brush comprised of at least a plurality of pairs of elongate brush wire tufts, each one of the brush wire tufts comprised of one of a plurality of wires and strands. 2. The rotary brush of claim 1, wherein each brush wire tuft is comprised of a plurality of strands twisted together substantially the length of each brush wire tuft, with each one of the strands comprised of at least a plurality of elongate wires twisted substantially the length of each strand. 3. The rotary brush of claim 2, wherein each brush wire tuft is formed with at least a plurality of pairs of twists, and each strand of each one of the brush wire tufts is formed with at least a plurality of pairs of twists. 4. The rotary brush of claim 3, wherein the strands of each brush wire tuft are twisted into a cable knot brush wire tuft configuration. 5. The rotary brush of claim 4, further comprising: (a) a central hub with at least a plurality of pairs of brush wire tuft mounting openings spaced (i) radially from a central axis of rotation of the brush, and (ii) circumferentially apart from one another, the central disc or hub further comprising (a) a radially outermost group of brush wire tuft mounting openings spaced circumferentially about the hub, and (b) a radially innermost group of brush wire tuft mounting openings spaced circumferentially about the hub that is spaced radially inwardly of the radially outermost group of brush wire tuft mounting openings; and (b) a brush wire tuft extending outwardly from each one of the brush mounting openings. 6. The rotary brush of claim 5, wherein the size of the brush wire tuft mounting openings of one of the radially innermost brush wire tuft mounting openings and radially outermost brush wire tuft mounting openings is larger than the brush mounting openings of the other one of radially innermost brush wire tuft mounting openings and radially outermost brush wire tuft mounting openings. 7. The rotary brush of claim 6, wherein the brush wire tufts extending radially outwardly from one of the radially innermost brush wire tuft mounting openings and radially outermost brush wire tuft mounting openings extend farther radially outwardly than the brush wires extending radially outwardly from the other one of the radially innermost brush wire tuft mounting openings and radially outermost brush wire tuft mounting openings. 8. The rotary brush of claim 1, wherein each brush wire tuft is comprised of a plurality of strands twisted together substantially the length of each brush wire tuft, with each one of the strands comprised of at least a plurality of pairs of elongate wires braided substantially the length of each strand. 9. The rotary brush of claim 8, further comprising: (a) a central hub with at least a plurality of pairs of brush wire tuft mounting openings spaced (i) radially from a central axis of rotation of the brush, and (ii) circumferentially apart from one another, the central disc or hub further comprising (a) a radially outermost group of brush wire tuft mounting openings spaced circumferentially about the hub, and (b) a radially innermost group of brush wire tuft mounting openings spaced circumferentially about the hub that is spaced radially inwardly of the radially outermost group of brush wire tuft mounting openings; and (b) a brush wire tuft extending outwardly from each one of the brush mounting openings. 10. The rotary brush of claim 9, wherein the size of the brush wire tuft mounting openings of one of the radially innermost brush wire tuft mounting openings and radially outermost brush wire tuft mounting openings is larger than the brush mounting openings of the other one of radially innermost brush wire tuft mounting openings and radially outermost brush wire tuft mounting openings. 11. The rotary brush of claim 10, wherein the brush wire tufts extending radially outwardly from one of the radially innermost brush wire tuft mounting openings and radially outermost brush wire tuft mounting openings extend farther radially outwardly than the brush wires extending radially outwardly from the other one of the radially innermost brush wire tuft mounting openings and radially outermost brush wire tuft mounting openings. 12. The rotary brush of claim 8, wherein each one of the strands is comprised of at least a plurality of pairs of wires each having a different wire diameter. 13. The rotary brush of claim 8, wherein each one of the strands is comprised of at least a plurality of pairs of helical wires each having a different helical pitch. 14. The rotary brush of claim 13, wherein each one of the strands is comprised of at least one wire of a first diameter having a first pitch, at least one wire of a second diameter smaller than the first diameter having a second pitch greater than the first pitch, and at least one wire of a third diameter smaller than the first diameter and second diameter and a third pitch greater than the first pitch and second pitch. 15. The rotary brush of claim 1, wherein each brush wire tuft is comprised of a plurality of strands twisted together with adjacent strands arranged in an overlapping helical configuration. 16. The rotary brush of claim 15, wherein each brush wire tuft is generally cylindrical and hollow with a brush wire tuft sidewall formed by the helical overlapping strands. 17. The rotary brush of claim 1, wherein each brush wire tuft is comprised of a plurality of strands twisted together with adjacent strands arranged in an overlapping braided helical configuration. 18. The rotary brush of claim 1, wherein each one of the brush wire tufts is tubular and comprised of a plurality of strands composed of a plurality of wires arranged in a closed helix with the strands of each one of the brush wire tufts forming a generally tubular wall of the brush wire tuft. 19. The rotary brush of claim 1, wherein each one of the brush wire tufts is comprised of a plurality of twisted strands, each one of the twisted strands is comprised of a plurality of wires twisted substantially along their length and arranged in a helical coil and forming a generally cylindrical wall of the brush wire tuft. 20. The rotary brush of claim 19, wherein each one of the brush wire tufts are configured for use in one of a rotary radial wheel brush, a rotary cup brush, and a rotary end brush. 21. The rotary brush of claim 1, wherein each one of the brush wire tufts is comprised of at least a plurality of pairs of the strands, each one of the strands formed of at least a plurality of pairs of elongate wires twisted together and formed into a helical arrangement comprising a twisted interlocking helical arrangement, each one of the strands having a free end defining a workpiece-engaging tuft face that is substantially flat. 22. The rotary brush of claim 1, wherein each one of the brush wire tufts is comprised of at least a plurality of pairs of the strands twisted together, each one of the strands formed of at least a plurality of pairs of elongate wires twisted together, each one of the strands having a free end defining a workpiece-engaging tuft face that is substantially flat. 23. The rotary brush of claim 22, wherein the substantially flat workpiece-engaging tuft face formed by the free ends of the strands that form each one of the brush wire tufts defines a plane of the workpiece-engaging face that is oriented at an acute angle relative to a longitudinal or lengthwise extent of the tuft. 24. The rotary brush of claim 22, wherein each one of the strands of each one of the brush wire tufts have a workpiece-engaging face acutely angled relative to a longitudinal or lengthwise extent of the strand. 24. The rotary brush of claim 22, wherein each one of wires of each one of the the strands of each one of the brush wire tufts have a workpiece-engaging face acutely angled relative to a longitudinal or lengthwise extent of the strand producing free ends of each one of the wires of each one of the strands of each one of the brush wire tufts having a sharp edge that more aggressively remove workpiece material during rotary brush operation. 26. The rotary brush of claim 22, wherein each one of the brush wire tufts is formed of at least a plurality of pairs of the elongate strands that each are comprised of at least a plurality of pairs of the wires whose ends define a generally planar workpiece-engaging face, and wherein the wires of each one of the strands are twisted together substantially along their length, and the strands of each one of the brush wire tufts twisted together substantially along their length. 27. The rotary brush of claim 22, wherein each one of the brush wire tufts is formed of at least a plurality of pairs of the elongate strands arranged in a plurality of pairs of rows of the strands with each one of the strands comprised of at least four elongate wires whose free ends define a generally planar workpiece-engaging face of the strand, with the workpiece-engaging faces of the strands defining a generally planar workpiece-engaging face of the brush wire tuft, and wherein the wires of each one of the strands are twisted together substantially along their length, and the strands of each one of the brush wire tufts twisted together substantially along their length. 28. The rotary brush of claim 1, wherein each one of the brush wire tufts is comprised of at least a plurality of pairs of the strands twisted together substantially along the entire length of the brush wire tuft, each one of the strands formed of at least a plurality of pairs of elongate wires having a plurality of different diameters twisted and braided together substantially along the length of the strand, each one of the wires of each one of the strands having a free end defining a sharp-edged workpiece-engaging wire face with the workpiece-engaging wire faces defining a workpiece-engaging face of each one of the strands where the workpiece-engaging wire faces are not coplanar. 29. The rotary brush of claim 1, wherein each one of the brush wire tufts is comprised of at least a plurality of pairs of the strands twisted together substantially along the entire length of the brush wire tuft and having free ends forming a workpiece-engaging face of the brush wire tuft comprised of a plurality of pairs of rows and columns of the strands, each one of the strands formed of at least a plurality of pairs of elongate wires having a plurality of pairs of different diameters twisted and braided together substantially along the length of the strand, each one of the wires of each one of the strands having a free end defining a sharp-edged workpiece-engaging wire face with the workpiece-engaging wire faces defining a workpiece-engaging face of each one of the strands where the workpiece-engaging wire faces are not coplanar. 30. The rotary brush of claim 29, wherein the strands that form each one of the brush wire tufts form a generally rectangular workpiece-engaging face of the brush wire tuft.
Record as JSON
{
"publication_number": "US2020138179A1",
"country": "US",
"kind": "A1",
"title": "Rotary Brush and Rotary Brush Wire Configurations",
"abstract": "A rotary wire brush, such as a wheel brush, e.g., double-stringer or dually brush, cup brush, bevel brush, or knotted end brush, composed of knotted brush wire tufts of multistrand construction each having at least a plurality of brush wire strands, preferably at least a plurality of pairs of, i.e., at least three, strands each formed of at least a plurality, preferably at least a plurality of pairs of, i.e., at least three, wires. The wires forming strands are twisted, braided, or twisted and braided, and the strands that form tufts are twisted, braided, or twisted and braided. A preferred brush employs a center disc, e.g., hub, with radially offset tuft anchor holes, which can have different sizes, from which twist knot tufts, which also can have different sizes, can outwardly extend from the disc different distances by being configured with an offset trim preferably having different trim lengths",
"claims": [
"1. A rotary brush comprised of at least a plurality of pairs of elongate brush wire tufts, each one of the brush wire tufts comprised of one of a plurality of wires and strands. 2. The rotary brush of claim 1, wherein each brush wire tuft is comprised of a plurality of strands twisted together substantially the length of each brush wire tuft, with each one of the strands comprised of at least a plurality of elongate wires twisted substantially the length of each strand. 3. The rotary brush of claim 2, wherein each brush wire tuft is formed with at least a plurality of pairs of twists, and each strand of each one of the brush wire tufts is formed with at least a plurality of pairs of twists. 4. The rotary brush of claim 3, wherein the strands of each brush wire tuft are twisted into a cable knot brush wire tuft configuration. 5. The rotary brush of claim 4, further comprising: (a) a central hub with at least a plurality of pairs of brush wire tuft mounting openings spaced (i) radially from a central axis of rotation of the brush, and (ii) circumferentially apart from one another, the central disc or hub further comprising (a) a radially outermost group of brush wire tuft mounting openings spaced circumferentially about the hub, and (b) a radially innermost group of brush wire tuft mounting openings spaced circumferentially about the hub that is spaced radially inwardly of the radially outermost group of brush wire tuft mounting openings; and (b) a brush wire tuft extending outwardly from each one of the brush mounting openings. 6. The rotary brush of claim 5, wherein the size of the brush wire tuft mounting openings of one of the radially innermost brush wire tuft mounting openings and radially outermost brush wire tuft mounting openings is larger than the brush mounting openings of the other one of radially innermost brush wire tuft mounting openings and radially outermost brush wire tuft mounting openings. 7. The rotary brush of claim 6, wherein the brush wire tufts extending radially outwardly from one of the radially innermost brush wire tuft mounting openings and radially outermost brush wire tuft mounting openings extend farther radially outwardly than the brush wires extending radially outwardly from the other one of the radially innermost brush wire tuft mounting openings and radially outermost brush wire tuft mounting openings. 8. The rotary brush of claim 1, wherein each brush wire tuft is comprised of a plurality of strands twisted together substantially the length of each brush wire tuft, with each one of the strands comprised of at least a plurality of pairs of elongate wires braided substantially the length of each strand. 9. The rotary brush of claim 8, further comprising: (a) a central hub with at least a plurality of pairs of brush wire tuft mounting openings spaced (i) radially from a central axis of rotation of the brush, and (ii) circumferentially apart from one another, the central disc or hub further comprising (a) a radially outermost group of brush wire tuft mounting openings spaced circumferentially about the hub, and (b) a radially innermost group of brush wire tuft mounting openings spaced circumferentially about the hub that is spaced radially inwardly of the radially outermost group of brush wire tuft mounting openings; and (b) a brush wire tuft extending outwardly from each one of the brush mounting openings. 10. The rotary brush of claim 9, wherein the size of the brush wire tuft mounting openings of one of the radially innermost brush wire tuft mounting openings and radially outermost brush wire tuft mounting openings is larger than the brush mounting openings of the other one of radially innermost brush wire tuft mounting openings and radially outermost brush wire tuft mounting openings. 11. The rotary brush of claim 10, wherein the brush wire tufts extending radially outwardly from one of the radially innermost brush wire tuft mounting openings and radially outermost brush wire tuft mounting openings extend farther radially outwardly than the brush wires extending radially outwardly from the other one of the radially innermost brush wire tuft mounting openings and radially outermost brush wire tuft mounting openings. 12. The rotary brush of claim 8, wherein each one of the strands is comprised of at least a plurality of pairs of wires each having a different wire diameter. 13. The rotary brush of claim 8, wherein each one of the strands is comprised of at least a plurality of pairs of helical wires each having a different helical pitch. 14. The rotary brush of claim 13, wherein each one of the strands is comprised of at least one wire of a first diameter having a first pitch, at least one wire of a second diameter smaller than the first diameter having a second pitch greater than the first pitch, and at least one wire of a third diameter smaller than the first diameter and second diameter and a third pitch greater than the first pitch and second pitch. 15. The rotary brush of claim 1, wherein each brush wire tuft is comprised of a plurality of strands twisted together with adjacent strands arranged in an overlapping helical configuration. 16. The rotary brush of claim 15, wherein each brush wire tuft is generally cylindrical and hollow with a brush wire tuft sidewall formed by the helical overlapping strands. 17. The rotary brush of claim 1, wherein each brush wire tuft is comprised of a plurality of strands twisted together with adjacent strands arranged in an overlapping braided helical configuration. 18. The rotary brush of claim 1, wherein each one of the brush wire tufts is tubular and comprised of a plurality of strands composed of a plurality of wires arranged in a closed helix with the strands of each one of the brush wire tufts forming a generally tubular wall of the brush wire tuft. 19. The rotary brush of claim 1, wherein each one of the brush wire tufts is comprised of a plurality of twisted strands, each one of the twisted strands is comprised of a plurality of wires twisted substantially along their length and arranged in a helical coil and forming a generally cylindrical wall of the brush wire tuft. 20. The rotary brush of claim 19, wherein each one of the brush wire tufts are configured for use in one of a rotary radial wheel brush, a rotary cup brush, and a rotary end brush. 21. The rotary brush of claim 1, wherein each one of the brush wire tufts is comprised of at least a plurality of pairs of the strands, each one of the strands formed of at least a plurality of pairs of elongate wires twisted together and formed into a helical arrangement comprising a twisted interlocking helical arrangement, each one of the strands having a free end defining a workpiece-engaging tuft face that is substantially flat. 22. The rotary brush of claim 1, wherein each one of the brush wire tufts is comprised of at least a plurality of pairs of the strands twisted together, each one of the strands formed of at least a plurality of pairs of elongate wires twisted together, each one of the strands having a free end defining a workpiece-engaging tuft face that is substantially flat. 23. The rotary brush of claim 22, wherein the substantially flat workpiece-engaging tuft face formed by the free ends of the strands that form each one of the brush wire tufts defines a plane of the workpiece-engaging face that is oriented at an acute angle relative to a longitudinal or lengthwise extent of the tuft. 24. The rotary brush of claim 22, wherein each one of the strands of each one of the brush wire tufts have a workpiece-engaging face acutely angled relative to a longitudinal or lengthwise extent of the strand. 24. The rotary brush of claim 22, wherein each one of wires of each one of the the strands of each one of the brush wire tufts have a workpiece-engaging face acutely angled relative to a longitudinal or lengthwise extent of the strand producing free ends of each one of the wires of each one of the strands of each one of the brush wire tufts having a sharp edge that more aggressively remove workpiece material during rotary brush operation. 26. The rotary brush of claim 22, wherein each one of the brush wire tufts is formed of at least a plurality of pairs of the elongate strands that each are comprised of at least a plurality of pairs of the wires whose ends define a generally planar workpiece-engaging face, and wherein the wires of each one of the strands are twisted together substantially along their length, and the strands of each one of the brush wire tufts twisted together substantially along their length. 27. The rotary brush of claim 22, wherein each one of the brush wire tufts is formed of at least a plurality of pairs of the elongate strands arranged in a plurality of pairs of rows of the strands with each one of the strands comprised of at least four elongate wires whose free ends define a generally planar workpiece-engaging face of the strand, with the workpiece-engaging faces of the strands defining a generally planar workpiece-engaging face of the brush wire tuft, and wherein the wires of each one of the strands are twisted together substantially along their length, and the strands of each one of the brush wire tufts twisted together substantially along their length. 28. The rotary brush of claim 1, wherein each one of the brush wire tufts is comprised of at least a plurality of pairs of the strands twisted together substantially along the entire length of the brush wire tuft, each one of the strands formed of at least a plurality of pairs of elongate wires having a plurality of different diameters twisted and braided together substantially along the length of the strand, each one of the wires of each one of the strands having a free end defining a sharp-edged workpiece-engaging wire face with the workpiece-engaging wire faces defining a workpiece-engaging face of each one of the strands where the workpiece-engaging wire faces are not coplanar. 29. The rotary brush of claim 1, wherein each one of the brush wire tufts is comprised of at least a plurality of pairs of the strands twisted together substantially along the entire length of the brush wire tuft and having free ends forming a workpiece-engaging face of the brush wire tuft comprised of a plurality of pairs of rows and columns of the strands, each one of the strands formed of at least a plurality of pairs of elongate wires having a plurality of pairs of different diameters twisted and braided together substantially along the length of the strand, each one of the wires of each one of the strands having a free end defining a sharp-edged workpiece-engaging wire face with the workpiece-engaging wire faces defining a workpiece-engaging face of each one of the strands where the workpiece-engaging wire faces are not coplanar. 30. The rotary brush of claim 29, wherein the strands that form each one of the brush wire tufts form a generally rectangular workpiece-engaging face of the brush wire tuft."
],
"cpc": [
"A46B 9/028",
"A46B 13/008",
"A46B 2200/3093",
"A46B 3/08",
"A46B 7/08",
"A46B 9/06",
"B24B 29/005",
"B24D 13/10",
"B24D 13/20"
],
"assignees": [
"OSBORN LLC"
],
"filing_date": "2020-01-06",
"publication_date": "2020-05-07",
"priority_date": "2017-06-05",
"application_number": "US-202016735689-A",
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}
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