Au-Ag-Pd-Cu合金的研究。(第二部分)含金30wt %合金的一些性能[作者简介]。

K Okazaki
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引用次数: 0

摘要

在以前的文章中,作者报道了30 wt%的Au在Au- ag - pd - cu四元牙合金中的较有利含量。本文对30wt % Au-Ag-Pd-Cu合金中钯和铜的适宜含量进行了实验研究。Pd和Cu的含量分别从5 wt%变为25 wt%和从10 wt%变为20 wt%。银的含量是平衡的,没有添加其他金属。测试了凝固温度范围、抗拉强度、伸长率、硬度、耐蚀性和浇注性。结果如下:1)这些合金的液相点在880℃左右,约为140℃,但大多数合金的液相点在1100℃以下,当Cu含量为20%时,凝固温度范围较窄。2)锻压试样的抗拉强度和伸长率随Pd含量的增加而增加,而铸态试样在Pd含量为15 wt%左右时力学性能最高。维氏硬度在116到235之间。3)在0.1% Na2S溶液中的腐蚀试验表明,随着Pd含量的增加,合金的耐蚀性提高,Pd含量大于20 wt%的合金具有良好的耐蚀性。4)浇注性受Pd含量的影响,在Pd含量为15 wt% ~ 20 wt%之间,浇注性明显下降,但其浇注性是市场上合金的2倍。从这些结果来看,含有15 ~ 20 wt% Pd和15 ~ 25 wt% Cu的合金比含有30 wt% Au-Ag-Pd-Cu的合金更有利。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
[Studies on Au-Ag-Pd-Cu alloys. (Part 2) Some properties on alloys containing 30 wt% Au (author's transl)].

In the previous paper, the author reported 30 wt% Au was more favourable content in Au-Ag-Pd-Cu quaternary dental alloys. In this paper, the experiment was carried out to find suitable Pd and Cu content in 30 wt% Au-Ag-Pd-Cu alloy. Pd and Cu content was changed from 5 wt% to 25 wt% and from 10 wt% to 20 wt% respectively. Ag content was balanced, and no other metals was added. Range of solidification temperature, tensile strength, elongation, hardness, corrosion resistivity and castability were tested. Results were as follows. 1) In these alloys, liquidus points were in the range of 880 degree C approximately 140 degree C, but in the majority of alloys, liquidus points were under 1100 degree C. Range of solidification temperature was more narrow in 20 wt% Cu than other Cu content. 2) The tensile strength and elongation of swaged specimens increased as Pd content increased, but in case of cast specimens, mechanical properties were the highest at 15 approximately 20 wt% Pd. The Vicker's hardness was in the range of 116 to 235. 3) The corrosion test in 0.1% Na2S solution indicated that the corrosion resistance was increased with Pd content and alloys contained more than 20 wt% Pd showed good resistance to corrosion. 4) The castability was affected by the Pd content and much decreased between 15 wt% Pd and 20 wt% Pd, but the castability of these alloys is twice as good as the alloys on the market. From these results, it seemed that the alloys containing 15 approximately 20 wt% Pd and 15 approximately 25 wt% Cu were more favourable composition to 30 wt% Au-Ag-Pd-Cu alloys.

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