Au-Ag-Pd-Cu合金的研究。(第一部分)Au组分对合金某些性能的影响[作者简介]。

K Okazaki
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摘要

对Au- ag - pd - cu四元牙科合金进行了研究,找出了较为有利的Au含量。钯和铜的含量分别固定在20 wt%,金的含量从10 wt%变化到40 wt%,银的含量平衡。进行了拉伸、硬度、腐蚀和浇注性能试验。结果如下:1)锻压试样的抗拉强度和伸长率在30 wt% Au时最高,而铸造试样的抗拉强度在20 wt% Au时最高,伸长率在30 wt% Au时最低。这些差异之间的模压和铸造试样似乎取决于铸造孔隙率。2)维氏硬度试验表明,硬度随Au含量的增加而逐渐升高,在Au含量为30 wt%时达到最高值。3)0.1% Na2S溶液腐蚀试验表明,耐蚀性随Au含量的增加而增加,但在Au含量为30 wt%时增加的速度减慢。4)浇注性试验表明,两者之间无显著差异。这些实验结果似乎表明,30 wt%的Au是金-银-钯-铜牙科合金的有利成分。
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 1) Effects of Au component on some properties of alloys (author's transl)].

Au-Ag-Pd-Cu quaternary dental alloys were studied to find out the more favourable Au content. Pd and Cu content were fixed to 20 wt% respectively but Au content were changed from 10 wt% to 40 wt% and Ag content were balanced. Tensile, hardness, corrosion and castability test were carried out. Results were as follows. 1) The tensile strength and elongation of swaged specimen showed highest value at 30 wt% Au but in case of casted specimen, tensile strength was highest as 20 wt% and elongation was minimum at 30 wt% Au. Those differences between swaged and cast specimens were seemed to depend on the casting porosities. 2) The Vickers hardness test showed that the hardness gradually increased with Au content and showed the highest value at 30 wt% Au. 3) The corrosion test in the 0.1% Na2S solution indicated that the corrosion resistance was increased with Au content but the rate of increment was slow down at 30 wt% Au. 4) The castability test showed that no significant difference was found out one another. These experimental results seemed to indicate that 30 wt% Au was the favourable composition for Au-Ag-Pd-Cu dental alloys.

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