[Effects of Au content on ageing characteristics of Dental AG-Pd-Cu-Au alloys (I). Ageing characteristics of the alloys quenched from 800 degrees C designated by JIS as solution treatment temperature (author's transl)].

S Tanaka
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Abstract

Commercial Ag-Pd-Cu-Au alloys of which Au content was changed form 0 to 50 wt. % were quenched from 800 degrees designated by JIS as solution treatment temperature and aged isochronically. The maximum hardness of the alloys by ageing decreased with increasing the Au content. Shape of age-hardening curve of the alloys was divided into two groups, one was of the lower Au content alloys containing below 30 wt. / Au and the other was of the higher Au content alloys containing more than 40 wt. % Au. As quenched structure of the lower Au content alloys was mixture of f.c.c alpha 2 phase and L20 type ordered phase (beta phase), on the other hand, the higher Au content alloys was composed simply by f.c.c alpha phase only. The maximum hardness of the lower Au content alloys given by ageing was caused by precipitates appeared at grain boundary, and of the higher Au content alloys was caused by precipitates in the grain were found. These facts may suggest that the mechanism of age hardening for the alloys change with increasing the Au content.

[Au含量对牙科AG-Pd-Cu-Au合金时效特性的影响(I).按JIS定溶处理温度800℃淬火合金的时效特性(作者译)]。
将Au含量从0 wt. %改变为50 wt. %的商品Ag-Pd-Cu-Au合金从JIS规定的800度固溶处理温度处淬火,并进行等慢时效处理。合金的最大时效硬度随Au含量的增加而降低。合金的时效硬化曲线形状分为两组,一组是低Au含量的合金,Au含量低于30 wt. / Au,另一组是高Au含量的合金,Au含量大于40 wt. %。低Au含量合金的淬火组织是由f.c.c α 2相和L20型有序相(β相)混合而成,而高Au含量合金的淬火组织仅由f.c.c α相组成。低Au含量合金时效后的最大硬度是晶界析出物引起的,高Au含量合金时效后的最大硬度是晶界析出物引起的。这说明合金的时效硬化机制随着Au含量的增加而改变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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