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首页> 外文期刊>The Physics of Metals and Metallography >Investigation of the structure stability and superelastic behavior of thermomechanically treated Ti-Nb-Zr and Ti-Nb-Ta shape-memory alloys
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Investigation of the structure stability and superelastic behavior of thermomechanically treated Ti-Nb-Zr and Ti-Nb-Ta shape-memory alloys

机译:热机械处理的Ti-Nb-Zr和Ti-Nb-Ta形状记忆合金的结构稳定性和超弹性行为的研究

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摘要

The superelastic parameters of Ti-Nb-Ta and Ti-Nb-Zr alloys, such as Young's modulus, residual strain, and transformation yield stress after thermomechanical treatment (TMT), were determined during cyclic mechanical tests using the tension-unloading scheme (maximum strain 2% per cycle, ten cycles). The superelastic parameters and the alloy structure have been studied by electron microscopy and X-ray diffraction analysis before and after testing and after holding for 40 days, as well as after retesting. The Young's modulus of the Ti-Nb-Ta alloy decreases from 30-40 to 20-25 GPa during mechanocycling after TMT by different modes; however, it returns to its original magnitude during subsequent holding for 40 days, and changes only a little during repeated mechanocycling. The Young's modulus of the Ti-Nb-Zr alloy changes insignificantly during mechanocycling, recovers during holding, and behaves stably upon repeated mechanocycling. Surface tensile stresses arise during mechanocycling, which facilitate the development of martensitic transformation under load, orient it, and thereby promote a decrease in the transformation yield stress and the residual strain. The enhancement of the level of initial strengthening stabilizes the superelastic behavior during mechanocycling.
机译:在循环机械试验过程中,使用张力卸载方案(最大每个周期2%(十个周期)。在测试前后,保持40天以及重新测试后,都通过电子显微镜和X射线衍射分析研究了超弹性参数和合金结构。在TMT后的机械循环过程中,Ti-Nb-Ta合金的杨氏模量从30-40 GPa降低到20-25 GPa。但是,在随后的40天保持过程中,它恢复了其原始大小,并且在重复的机械循环过程中仅改变了一点。 Ti-Nb-Zr合金的杨氏模量在机械循环过程中变化不大,在保持过程中恢复,并且在反复进行机械循环后表现稳定。在机械循环过程中会产生表面拉应力,这会促进马氏体在载荷作用下的转变,使其定向,从而促进转变屈服应力和残余应变的降低。初始强化水平的提高稳定了机械循环过程中的超弹性行为。

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