Claims
- 1. A sander, comprising
a sanding assembly including an abrasive surface, and a conveyor configured to convey a product adjacent the sanding assembly for sanding, a drive system configured to move the abrasive surface in at least two nonlinear motions relative to the product.
- 2. The sander of claim 1, wherein the at least two nonlinear motions are independent nonlinear motions.
- 3. The sander of claim 1, wherein the sanding assembly includes an elongate platen.
- 4. The sander of claim 1, wherein the sanding assembly includes at least one circular platen.
- 5. The sander of claim 1, wherein the sanding assembly includes a plurality of circular rotating platens arranged in at least two offset rows.
- 6. The sander of claim 1, wherein the sanding assembly includes one or more circular platens mounted on a rotating shaft so that they exhibit eccentric orbital motion.
- 7. The sander of claim 1, wherein the sanding assembly includes at least one sanding drum.
- 8. The sander of claim 7, wherein the drum is oriented obliquely relative to the conveying direction of the conveyor.
- 9. The sander of claim 1, wherein the sanding assembly includes one or more platens mounted on an eccentric shaft for imparting an orbital motion to the platen.
- 10. The sander of claim 1, wherein the two nonlinear motions include at least one of an orbital motion and a circular motion.
- 11. The sander of claim 1, wherein the two nonlinear motions include two orbital motions.
- 12. The sander of claim 1, wherein the periods of the two motions are different.
- 13. The sander of claim 1, wherein the drive system is configured to impart an additional linear motion relative to the product and the abrasive surface.
- 14. The sander of claim 1, wherein the drive system is configured to impart at least one nonlinear motion to the conveyor relative to the abrasive surface.
- 15. A sander, comprising
a sanding assembly including an abrasive surface, and a conveyor configured to convey a product adjacent the sanding assembly for sanding, a drive system configured to move the abrasive surface in at least three motions relative to the product, where the at least three motions include at least one linear motion and at least one nonlinear motion.
- 16. The sander of claim 15, where the at least three motions include at least two linear motions and at least one nonlinear motion.
- 17. A sander, comprising
a frame, a conveyer connected to the frame configured to convey a product into the sander for sanding, a first drive mechanism that supports a brace and that causes the brace to move in an orbit, a sanding assembly connected to the brace, and that includes an abrasive surface, and a second drive mechanism that causes the abrasive surface to move in a second independent nonlinear motion with respect to the product being conveyed by the conveyor.
- 18. The sander of claim 17, wherein the sanding assembly includes at least one of the following: a sanding disk, a sanding drum, an elongate platen structure, and a platen array.
- 19. The sander of claim 17, wherein the sanding assembly includes counter-rotating sanding drums.
- 20. The sander of claim 17, wherein the sanding assembly includes a sanding disk that is configured to move in an eccentric orbit.
- 21. The sander of claim 20, where the sanding disk is further configured to rotate while it moves in the eccentric orbit.
- 22. The sander of claim 20, where the second drive system is disposed on the brace.
- 23. The sander of claim 20, where the second drive system is coupled to the first drive system.
- 24. A sander, comprising
a frame, a conveyer connected to the frame and configured to convey a product in a conveying direction through the sander for sanding, a first drive mechanism that supports a brace and that causes the brace to move in a first nonlinear motion, and a rotatable sanding drum having an abrasive surface, where the sanding drum is supported by the brace adjacent to the conveyer.
- 25. The sander of claim 24, further comprising a second drive mechanism that causes the sanding drum to move in a second nonlinear motion that is independent of the first nonlinear motion.
- 26. A sander, comprising
a frame, a conveyer connected to the frame and configured to convey a product in a conveying direction through the sander for sanding, a first drive mechanism that supports a brace and that causes the brace to move in a first nonlinear motion, a sanding drum having an abrasive surface, where the sanding drum is supported by the brace adjacent to the conveyer, and a second drive mechanism that causes the sanding drum to move in a second nonlinear motion that is independent of the first nonlinear motion.
- 27. The sander of claim 26, where the sanding drum is supported by the brace at an oblique angle relative to the conveyer,
- 28. The sander of claim 27, where the axis of rotation of the sanding drum is at an angle of between about 5 degrees and about 40 degrees from a plane orthogonal to the conveying direction.
- 29. The sander of claim 27, where the axis of rotation of the sanding drum is at an angle of between about 20 degrees and about 30 degrees from a plane orthogonal to the conveying direction.
- 30. The sander of claim 26, where the first and second nonlinear motions are eccentric orbits.
- 31. The sander of claim 26, where the second drive mechanism is coupled to the first drive mechanism.
- 32. The sander of claim 26, further comprising a rotating brush configured to abrade and polish the product after it has been sanded by the abrasive surface.
- 33. A method of sanding a product, the method comprising
conveying a product on a conveyor past a sanding assembly, where the sanding assembly includes an abrasive surface, imparting a composite sanding motion on the abrasive surface relative to the product where the composite sanding motion is imparted by a drive system and is in addition to the motion of the product being conveyed by the conveyor, and where the composite sanding motion combines at least two applied nonlinear motions.
- 34. The method of claim 33, wherein the two applied nonlinear motions are independent nonlinear motions.
- 35. The method of claim 33, wherein the composite sanding motion combines at least two orbiting motions.
- 36. The method of claim 35, wherein the composite sanding motion further includes a linear motion.
- 37. The method of claim 36, wherein the linear motion is imparted by the rotation of a sanding drum.
- 38. The method of claim 36, wherein the linear motion is imparted by a sanding belt.
- 39. The method of claim 33, further comprising abrading and polishing the product with a rotating brush after sanding is effected.
Parent Case Info
[0001] This application is based upon and claims priority under 35 U.S.C. §119 from U.S. Provisional Patent Application Serial No. 60/309,948, filed Aug. 2, 2001, which is incorporated herein by reference in its entirety for all purposes. The following patent applications and issued patent are hereby incorporated by reference: application Ser. No. 08/993,699 filed Dec. 18, 1997; application Ser. No. 08/477,069 filed Jun. 7, 1995, now issued as U.S. Pat. No. 5,702,287; application Ser. No. 08/260,360 filed Jun. 15, 1994, now issued as U.S. Pat. No. 5,443,414; application Ser. No. 08/006,379 filed Jan. 19, 1993, now issued as U.S. Pat. No. 5,321,913; application Ser. No. 07/787,897 filed Nov. 5, 1991, now issued as U.S. Pat. No. 5,181,342; application Ser. No. 07/568,902 filed Aug. 17, 1990, now issued as U.S. Pat. No. 5,081,794.
Provisional Applications (1)
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Number |
Date |
Country |
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60309948 |
Aug 2001 |
US |