Abrasive tool making process – material – or composition – Impregnating or coating an abrasive tool
Patent
1981-10-13
1983-11-29
Whitehead, Harold D.
Abrasive tool making process, material, or composition
Impregnating or coating an abrasive tool
51229, 511311, 125 30R, B24B 100
Patent
active
044174233
ABSTRACT:
A method for forming a face on a crystalline dielectric material having anisotropic crystallographic hardness. The method includes the steps of contacting the dielectric material with an abrasive surface having a loosely bound charge of abrasive particles, while maintaining relative motion between the dielectric material and the abrasive surface, and isotropically coning the dielectric material by continuously rotating the dielectric material and applying a force between a dielectric material and the abrasive surface which allows a face to be produced in the dielectric material because of its anisotropic crystallographic hardness.
REFERENCES:
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patent: 3626644 (1971-12-01), Cupler
patent: 4104832 (1978-08-01), Keizer
patent: 4162510 (1979-07-01), Keizer
patent: 4372042 (1983-02-01), Hughes
D. Crompton et al., "The Wear of Diamond," Proceedings of the Royal Society (London), A, vol. 333, pp. 435-454 (1973).
M. Seal, "The Abrasion of Diamond," Proceedings of the Royal Society A, vol. 248, pp. 379-393 (1958).
F. P. Bowden et al., "The Polishing, Surface Flow and Wear of Diamond and Glass" Proceedings of the Royal Society, A, vol. 248, pp. 368-378 (1958).
E. M. Wilks et al., "The Resistance of Diamond to Abrasion," Journal of Physics D: Applied Physics, vol. 5, pp. 1902-1919 (1972).
R. Berman, Editor, Physical Properties of Diamond, Clarendon Press, Oxford, 1965, pp. 209-220.
Cave Eric F.
Cowden James J.
Lazar Joseph D.
Morris Birgit E.
RCA Corporation
Whitehead Harold D.
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