Claims
- 1. A coated abrasive article comprising:a backing having a first major surface and a second major surface opposite said first major surface;
a first layer disposed on said first major surface of said backing, said first layer comprising abrasive particles and binder; and a second layer disposed on a second major surface of said backing, said second layer comprising a composition comprising:
binder; at least about 25% by weight graphite particles, based on the total solids content of the composition; and second particles having a median diameter no greater than about 200 micrometers.
- 2. The coated abrasive article of claim 1, comprising at least about 30% by weight graphite particles, based on the total solids content of the composition.
- 3. The coated abrasive article of claim 1, comprising at least about 40% by weight graphite particles, based on the total solids content of the composition.
- 4. The coated abrasive article of claim 1, comprising at least about 50% by weight graphite particles, based on the total solids content of the composition.
- 5. The coated abrasive article of claim 1, comprising at least about 60% by weight graphite particles, based on the total solids content of the composition.
- 6. The coated abrasive article of claim 1, wherein the binder is selected from the group consisting of acrylic, acrylate, phenolic, epoxy, melamine-formaldehyde, and combinations thereof.
- 7. The coated abrasive article of claim 1, wherein said second particles are selected from the group consisting of calcium carbonate, carbon black, iron oxide, silica, silicates, clay, feldspar, mica, calcium silicate, calcium metasilicate, sodium aluminosilicate, sodium silicate, calcium sulfate, barium sulfate, sodium sulfate, aluminum sodium sulfate, aluminum sulfate, gypsum, vermiculite, aluminum trihydrate, aluminum oxide, titanium dioxide, cryolite, chiolite, metal sulfite, and mixtures thereof.
- 8. The coated abrasive article of claim 1, wherein said second particles are selected from the group consisting of calcium carbonate, carbon black, and mixtures thereof.
- 9. The coated abrasive article of claim 1, wherein said second particles have a median diameter of no greater than about 100 micrometers.
- 10. A coated abrasive article comprising:
a backing having a first major surface and a second major surface opposite said first major surface; a first layer disposed on said first major surface of said backing, said first layer comprising abrasive particles and binder; and a second layer disposed on a second major surface of said backing, said second layer comprising a composition comprising:
binder selected from the group consisting of acrylic, acrylate, phenolic, epoxy, melamine-formaldehyde, urethane, neoprene, and combinations thereof; and at least 37% by weight graphite particles, based on the total solids content of the composition.
- 11. The coated abrasive article of claim 10, comprising at least about 50% by weight graphite particles, based on the total solids content of the composition.
- 12. The coated abrasive article of claim 10, comprising at least about 60% by weight graphite particles, based on the total solids content of the composition.
- 13. The coated abrasive article of claim 10, wherein the binder comprises phenolic.
- 14. A method of making a coated abrasive article, said method comprising:
providing a backing having a first major surface and a second major surface opposite said first major surface; applying an abrasive layer on said first major surface, said abrasive layer comprising binder and abrasive particles; and applying a composition onto said second major surface of the backing, said composition comprising binder, at least about 25% by weight graphite particles, based on the total solids content of the composition, and second particles having a median diameter no greater than about 200 micrometers.
- 15. The method of claim 14, wherein said second particles are selected from the group consisting of calcium carbonate, carbon black, iron oxide, silica, silicates, clay, feldspar, mica, calcium silicate, calcium metasilicate, sodium aluminosilicate, sodium silicate, calcium sulfate, barium sulfate, sodium sulfate, aluminum sodium sulfate, aluminum sulfate, gypsum, vermiculite, aluminum trihydrate, aluminum oxide, titanium dioxide, cryolite, chiolite, metal sulfite, and mixtures thereof.
- 16. The method of claim 14, wherein said second particles are selected from the group consisting of calcium carbonate, carbon black, and mixtures thereof.
- 17. The method of claim 14, wherein said second particles have a median diameter of no greater than about 100 micrometers.
- 18. A method of making a coated abrasive article, said method comprising:
providing a backing having a first major surface and a second major surface opposite said first major surface; applying an abrasive layer on said first major surface, said abrasive layer comprising binder and abrasive particles; and applying a composition onto said second major surface of the backing, said composition comprising a binder precursor selected from the group consisting of acrylic, acrylate, phenolic, epoxy, melamine-formaldehyde, urethane, neoprene, and combinations thereof, and at least 37% by weight graphite particles based on the total solids content of the composition.
- 19. A method of abrading a workpiece using an apparatus comprising:
a platen, and an endless belt,
said belt having a first major surface and a second major surface opposite said first major surface, said belt comprising an abrasive coating disposed on the first major surface of said belt and a second coating comprising a composition disposed on the second major surface of said belt, said composition of said second coating comprising at least about 25% by weight graphite particles, based on the total solids content of the composition and second particles having a median diameter no greater than about 200 micrometers, said second coating being in contact with the platen, said method comprising:
abrading the workpiece with the abrasive surface of said belt, wherein the temperature of said platen is no greater than 100° C. during said abrading.
- 20. A method of abrading a workpiece using an apparatus comprising:
a platen, and an endless belt,
said belt having a first major surface and a second major surface opposite said first major surface, said belt comprising an abrasive coating disposed on the first major surface of said belt and a second coating comprising a composition disposed on the second major surface of said belt, said composition of said second coating comprising binder precursor selected from the group consisting of acrylic, acrylate, phenolic, epoxy, melamine-formaldehyde, urethane, neoprene, and combinations thereof, and at least 37% by weight graphite particles, based on the total solids content of the composition, said second coating being in contact with the platen, said method comprising:
abrading the workpiece with the abrasive surface of said belt, wherein the temperature of said platen is no greater than 100° C. during said abrading.
CROSS-REFERENCE TO RELATED APPLICATION
[0001] This application is a continuation-in-part of U.S. application Ser. No. 09/779,681, filed Feb. 8, 2001, now pending.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09779681 |
Feb 2001 |
US |
Child |
10412125 |
Apr 2003 |
US |