[j] .牙科用Ag-Pd-Au-Cu合金力学性能研究。(第1部分)时效硬化处理对合金拉伸性能的影响[作者简介]。

K Asaoka, K Tsuji, N Kuwayama
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引用次数: 0

摘要

用拉伸仪研究了Ag-Pd-Au-Cu合金随时效硬化的拉伸行为。用扫描电镜观察合金的断口形貌。合金的塑性变形由不连续屈服转变为抛物线型应变硬化,析出的硬颗粒随着时效的增大而增大。合金的抗拉强度与时效、硬度之间存在良好的相关性。采用最小二乘法计算了描述应力-应变曲线的Ludwik、Swift、Voce和Hollomon经验方程的应变硬化参数。由经验公式计算的理论抗拉强度与时效合金的抗拉试验结果吻合较好。但是,理论上的均匀伸长倾向于伸长。与其他合金相比,过时效合金的抗拉强度与抗应力之比极低。因此,在牙科中使用合金应避免过度老化。如果通过时效温度和时效时间控制析出相的组织,则可大大消除时效硬化的延性损失。
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 the mechanical properties of dental Ag-Pd-Au-Cu alloys. (Part 1) Effects of age-hardening treatment on the tensile behaviour of alloys (author's transl)].

Tensile behaviour of Ag-Pd-Au-Cu alloys depending on age-hardening was studied by the tensile test with extensometer. The fractured surface of the alloys was observed by the scanning electron microscope. Plastic deformation of alloys was changed from discontinuous yielding to parabolic strain hardening, as the size of precipitate hard particles was grown by aging. There appears to be good correlation between the tensile strength of alloys with aging and the hardness. Strain hardening parameters of the Ludwik, Swift, Voce and Hollomon empirical equations in describing the stress-strain curves were calculated by the least square method. Theoretical tensile strength which was computed from these empirical equations, was good agreement with the tensile test of alloys with aging. But, theoretical uniform elongation tended to elongate. The ratio of tensile strength to proof stress of over-aged alloys was extremely low, as compared with the other alloys. So, over-aging should be avoided to use the alloys in dentistry. If structure of the precipitate particles is controlled by aging temperature and time, the loss of ductility on age-hardening will be considerably eliminated.

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