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Effect of Structure on the Critical Stresses and Strains in Titanium Nickelide-Based Alloys
Russian Metallurgy (Metally) ( IF 0.4 ) Pub Date : 2020-07-06 , DOI: 10.1134/s0036029520070095
M. Yu. Kollerov , D. E. Gusev , M. B. Afonina , R. E. Vinogradov

Abstract

The effect of the test temperature on the mechanical behavior of a titanium nickelide–based alloy is considered. The behavior of a titanium nickelide–based alloy is shown to be substantially dependent on the level of stresses and strains of the material. The critical stresses are determined by the solid-solution, grain-boundary, strain, and precipitation hardening mechanisms. The maximum critical strain can be achieved by a combination of several hardening mechanisms.



中文翻译:

结构对钛镍基合金临界应力和应变的影响

摘要

考虑了测试温度对镍钛合金的机械性能的影响。钛镍基合金的性能已显示出基本上取决于材料的应力和应变水平。临界应力由固溶体,晶界,应变和沉淀硬化机制决定。最大的临界应变可以通过几种硬化机制的组合来实现。

更新日期:2020-07-06
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