Grinding body having reduced weight
US-2018304442-A1 · Oct 25, 2018 · US
US10556322B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10556322-B2 |
| Application number | US-201715807699-A |
| Country | US |
| Kind code | B2 |
| Filing date | Nov 9, 2017 |
| Priority date | Nov 15, 2016 |
| Publication date | Feb 11, 2020 |
| Grant date | Feb 11, 2020 |
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This invention relates to abrasive flap discs that include wearable backing plates and methods of making and using such abrasive flap discs and wearable backing plates. The claimed articles, processes, and systems related to the use and manufacturing of such abrasive articles are improved in performance and cost effectiveness.
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What is claimed is: 1. An abrasive flap disc comprising: a wearable backing plate; and a plurality of abrasive flaps concentrically disposed about a periphery of the wearable backing plate, wherein the wearable backing plate comprises: a first wearable polymeric layer; a first reinforcing layer; and a second reinforcing layer, wherein the first wearable polymeric layer is disposed between the first reinforcing layer and the second reinforcing layer; wherein the abrasive flap disc comprises a minimum burst speed of at least 15,000 rpm to not greater than 30,000 rpm, a flexural stiffness of at least 760 MPa, and a flexural strength of at least 200 N. 2. An abrasive flap disc comprising: a wearable backing plate; and a plurality of abrasive flaps concentrically disposed about a periphery of the wearable backing plate, wherein the wearable backing plate comprises: a first wearable polymeric layer; a first reinforcing layer; a second reinforcing layer, wherein the first wearable polymeric layer is disposed between the first reinforcing layer and the second reinforcing layer; a second wearable polymeric layer disposed on the second reinforcing layer; and a third reinforcing layer disposed on the second wearable polymeric layer; wherein the first wearable polymeric layer comprises: 1 to 30 wt % polymeric resin; 50 to 95 wt % abrasive particles; 45 to 95 wt % nonabrasive particles; and 0 to 70 wt % filler particles. 3. The abrasive flap disc of claim 2 , wherein the wearable backing plate further comprises: a third wearable polymeric layer disposed on the third reinforcing layer, and a fourth reinforcing layer disposed on the third wearable polymeric layer. 4. An abrasive flap disc comprising: a wearable backing plate; and a plurality of abrasive flaps concentrically disposed about a periphery of the wearable backing plate, wherein the wearable backing plate comprises: a first wearable polymeric layer, wherein the first wearable polymeric layer comprises a polymeric resin, wherein the polymeric resin comprises a phenolic polymeric composition comprising a blend of a novolac resin and a resole resin, and abrasive particles, nonabrasive particles, filler particles, or a combination thereof dispersed in the polymeric resin; a first reinforcing layer; and a second reinforcing layer, wherein the first wearable polymeric layer is disposed between the first reinforcing layer and the second reinforcing layer. 5. The abrasive flap disc of claim 4 , wherein the abrasive particles comprise a Mohs hardness of 9 or more. 6. The abrasive particles of claim 5 , wherein the abrasive particles comprise one of alumina, zirconia, silicon carbide, silicon nitride, boron nitride, diamond, co-fused alumina zirconia, titanium diboride, boron carbide, alumina nitride, a combination thereof, or a blend thereof. 7. The abrasive flap disc of claim 4 , wherein the nonabrasive particles comprise a Mohs hardness of less than 9. 8. The abrasive flap disc of claim 4 , wherein the filler particles comprise one of cryolite, lithopone, iron pyrite, calcium carbonate, sodium carbonate, aluminum fluoride, iron oxide, barium sulfate, calcium sulfate, aluminum sulfate, calcium inosilicate (CaSiO3, a.k.a., wollastonite), cenosphere, clay, polymer modified clay, a combination thereof, or a blend thereof. 9. The abrasive flap disc of claim 1 , wherein the first reinforcing layer comprises a fabric. 10. The abrasive flap disc of claim 9 , wherein the fabric is a woven fabric, a nonwoven fabric, a mesh, or a combination thereof. 11. The abrasive flap disc of claim 9 , wherein the fabric comprises organic fibers, inorganic fibers, or a combination thereof. 12. The abrasive flap disc of claim 11 , wherein the inorganic fibers comprise glass fibers, metal fibers, ceramic fibers, cermet fibers, or a combination thereof. 13. The abrasive flap disc of claim 9 , wherein the fabric is impregnated with a polymeric composition. 14. The abrasive flap disc of claim 1 , comprising a ratio of the weight of the polymeric resin of the wearable backing plate (Weight backingplateresin ) to a total weight of the flap disc (Weight flapdisc ) in a range of 1:7 to 1:500. 15. The abrasive flap disc of claim 1 , comprising a rate of increase in specific grinding energy with respect to cumulative wear of not greater than 25% as compared to a conventional flap disc when the wearable backing plate is in grinding contact with a workpiece compared to when the backing plate is not in contact with the workpiece. 16. The abrasive flap disc of claim 2 , wherein the first reinforcing layer comprises a woven fabric, a nonwoven fabric, a mesh, or a combination thereof. 17. The abrasive flap disc of claim 16 , wherein the woven fabric, the nonwoven fabric, the mesh, or the combination thereof is impregnated with a polymeric composition. 18. The abrasive flap disc of claim 4 , wherein the first reinforcing layer comprises a woven fabric, a nonwoven fabric, a mesh, or a combination thereof. 19. The abrasive flap disc of claim 18 , wherein the woven fabric, the nonwoven fabric, the mesh, or the combination thereof is impregnated with a polymeric composition.
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