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首页> 外文期刊>Journal of Alloys and Compounds: An Interdisciplinary Journal of Materials Science and Solid-state Chemistry and Physics >Thermomechanical behavior and microstructural evolution of a Ni(Pd)-rich Ni24.3Ti49.7Pd26 high temperature shape memory alloy
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Thermomechanical behavior and microstructural evolution of a Ni(Pd)-rich Ni24.3Ti49.7Pd26 high temperature shape memory alloy

机译:富Ni(Pd)Ni24.3Ti49.7Pd26高温形状记忆合金的热力学行为和微观结构演变

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摘要

The effect of thermomechanical cycling on a slightly Ni(Pd)-rich Ni24.3Ti49.7Pd26 (near stochiometric Ni-Ti basis with Pd replacing Ni) high temperature shape memory alloy was investigated. Aged tensile specimens (400 degrees C/24 h/furnace cooled) were subjected to constant-stress thermal cycling in conjunction with microstructural assessment via in situ neutron diffraction and transmission electron microscopy (TEM), before and after testing. It was shown that in spite of the slightly Ni(Pd)-rich composition and heat treatment used to precipitation harden the alloy, the material exhibited dimensional instabilities with residual strain accumulation reaching 1.5% over 10 thermomechanical cycles. This was attributed to insufficient strengthening of the material (insufficient volume fraction of precipitate phase) to prevent plasticity from occurring concomitant with the martensitic transformation. In situ neutron diffraction revealed the presence of retained martensite while cycling under 300 MPa stress, which was also confirmed by transmission electron microscopy of post-cycled samples. Neutron diffraction analysis of the post-thermally-cycled samples under no-load revealed residual lattice strains in the martensite and austenite phases, remnant texture in the martensite phase, and peak broadening of the austenite phase. Texture developed in the martensite phase was composed mainly of those martensitic tensile variants observed during thermomechanical cycling. Presence of a high density of dislocations, deformation twins, and retained martensite was revealed in the austenite state via in-situ TEM in the post-cycled material, providing an explanation for the observed peak broadening in the neutron diffraction spectra. Despite the dimensional instabilities, this alloy exhibited a biased transformation strain on the order of 3% and a two-way shape memory effect (TWSME) strain of similar to 2%, at relatively high actuation temperatures. Published by Elsevier B.V.
机译:研究了热机械循环对稍富Ni(Pd)的Ni24.3Ti49.7Pd26(接近化学计量的Ni-Ti基础,用Pd代替Ni)高温形状记忆合金的影响。在测试之前和之后,将老化的拉伸试样(400摄氏度/ 24小时/炉冷却)进行恒定应力热循环,并通过原位中子衍射和透射电子显微镜(TEM)进行微观结构评估。结果表明,尽管采用少量富Ni(Pd)的成分和用于沉淀硬化合金的热处理,该材料仍表现出尺寸不稳定性,在10个热机械循环中残余应变累积达到1.5%。这归因于材料的强化不足(沉淀相的体积分数不足)以防止可塑性与马氏体转变同时发生。原位中子衍射显示在300 MPa应力下循环时存在残留的马氏体,这也由循环后样品的透射电子显微镜证实。空载后的热循环样品的中子衍射分析显示,马氏体和奥氏体相中残留有晶格应变,马氏体相中残留的织构以及奥氏体相的峰展宽。马氏体相中形成的织构主要由在热机械循环中观察到的那些马氏体拉伸变体组成。通过后循环材料中的原位TEM在奥氏体状态下显示出高密度的位错,变形孪晶和残留的马氏体,为中子衍射光谱中观察到的峰展宽提供了解释。尽管存在尺寸不稳定性,但在相对较高的驱动温度下,该合金仍表现出约3%的偏向变形应变和接近2%的双向形状记忆效应(TWSME)应变。由Elsevier B.V.发布

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