FeCrSi和AuCuSi三元合金的弹性变形和弹性波速

Hoc Nguyen Quang, Hien Nguyen Duc, Hoa Nguyen Thi, Uyen Pham Phuong, Ngoc Trinh Hong
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引用次数: 1

摘要

本文采用立方三元取代和间隙合金模型,在间隙原子浓度与取代原子浓度相比很小的条件下,取代原子浓度与主金属原子浓度相比很小。在此基础上,结合统计矩法得到的合金弹性波和弹性变形理论,对FeCrSi和AuCuSi合金的弹性模量E、K、G、弹性常数C11、C12、C44、纵波速度Vd和横波速度Vn与温度、压力、取代原子浓度和间隙原子浓度的关系进行了数值计算。将FeCrSi和AuCuSi的数值结果与Fe、FeCr、FeSi、Au、AuCu、AuSi等的计算和实验结果进行了比较。三元合金的数值结果预测了未来的实验结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Elastic deformation and elastic wave velocity of ternary alloys FeCrSi and AuCuSi
The paper uses the model of cubic ternary substitutional and interstitial alloy and conditions in which the interstitial atom concentration is very small compared to the substitutional atom concentration, the substitutional atom concentration is very small compared to the main metal atom concentration. On that basis together with the elastic wave and the elastic deformation theory of this alloy obtained by the statistical moment method, we perform numerical calculations for temperature, pressure, the concentration of substitutional atoms, and concentration of interstitial atoms dependences of the elastic moduli E, K, G, the elastic constants C11, C12, C44, the longitudinal wave velocity Vd and the transverse wave velocity Vn of alloys FeCrSi and AuCuSi. Numerical results for FeCrSi and AuCuSi are compared with that of Fe, FeCr, FeSi, Au, AuCu, AuSi, and other calculations, and experiments. Numerical results for ternary alloys predict experimental results in the future.
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