Difference in Age-hardening Mechanism in Dental Gold Alloys

Author:

Yasuda K.1,Ohta M.2

Affiliation:

1. Department of Dental Materials Science, Nagasaki University School of Dentistry, Nagasaki 852, Japan

2. Department of Dental Engineering, Faculty of Dentistry, Kyushu University, Fukuoka 812, Japan

Abstract

TEM and SAED studies were conducted to clarify a difference in age-hardening mechanism with changes of gold content in Au-Cu-Ag ternary alloys, 18K, 16K, and 14K gold alloys, for which the ratio of copper to silver remained at 65 to 35 in weight. Age-hardening in the 18K alloy was attributed to the formation of the AuCu I type ordered platelets on the matrix {100}. In the 16K and 14K alloys, a periodic antiphase domain structure of the AuCu II type ordered phase made a major contribution to age-hardening. An alternating coarse lamellar structure was formed by the mechanism of discontinuous precipitation in the 16K alloy, while a modulated structure by spinodal decomposition was observed in the 14K alloy.

Publisher

SAGE Publications

Subject

General Dentistry

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