银汞合金的化学成分、颗粒形式和退火温度对所得银汞合金蠕变的影响。

Journal of bioengineering Pub Date : 1977-01-01
M M Vrijoef, S J Jensen
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引用次数: 0

摘要

采用多元回归模型研究了银汞合金的化学成分、颗粒形态和退火温度对所得银汞合金蠕变的影响。由于没有或只有很少的关于不同工业合金热处理的信息,这些合金在四种不同的温度下进行了额外的热处理。发现锌含量、颗粒形态和退火温度对银汞合金蠕变的影响非常显著。较高的Zn含量和球形合金的加入使汞合金的蠕变减小。蠕变对退火温度的依赖性最小:在150℃和435℃热处理的合金比在315℃和319℃退火的合金获得更多的蠕变。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Chemical composition, particle form and annealing temperature of amalgam alloy versus creep of the resulting amalgam.

The influence of the chemical composition, particle form and annealing temperature of the amalgam alloy upon the creep of the resulting amalgam was investigated by means of a multiple regression model. Because no, or only little, information was available about the heat treatments of the different commercial alloys, the alloys were subjected to additional heat treatments at four different temperatures. The influence upon the creep of the amalgam of the Zn content, particle form and annealing temperature was found to be very significant. A higher Zn content as well as a spherical alloy resulted in less creep of the corresponding amalgam. The dependence of the creep upon the annealing temperature showed a minimum: more creep was obtained for amalgams prepared from the alloys heat treated at 150 degrees C and 435 degrees C than those from the alloys annealed at 315 degrees C and 319 degrees C, respectively.

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