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Mechanical and functional behavior of a Ni-rich $Ni_{50.3}Ti_{29.7}Hf_{20}$ high temperature shape memory alloy

机译:富镍$ Ni_ {50.3} Ti_ {29.7} Hf_ {20} $高温形状记忆合金的力学和功能行为

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摘要

The mechanical and functional behaviors of a Ni-rich Ni50.3Ti29.7Hf20 high temperature shape memoryalloy were investigated through combined ex situ macroscopic experiments and in situ synchrotron X-raydiffraction. Isothermal tension and compression tests were conducted between room temperature and260 C, while isobaric thermomechanical cycling experiments were conducted at selected stresses up to700 MPa. Isothermal testing of the martensite phase revealed no plastic strain up to the test limit of1 GPa and near-perfect superelastic behavior up to 3% applied strain at temperatures above the austenitefinish. Excellent dimensional stability with greater than 2.5% actuation strain without accumulation ofnoticeable residual strains (at stresses less than or equal to 400 MPa) were observed during isobaricthermal cycling experiments. The absence of residual strain accumulation during thermomechanicalcycling was confirmed by the lattice strains, determined from X-ray spectra. Even in the untrainedcondition, the material exhibited little or no history or path dependence in behavior, consistent withmeasurements of the bulk texture after thermomechanical cycling using synchrotron X-ray diffraction.Post deformation cycling revealed the limited conditions under which a slight two-way shape memoryeffect (TWSME) was obtained, with a maximum of 0.34% two-way shape memory strain after thermomechanicalcycling under 700 MPa.
机译:通过组合的非原位宏观实验和原位同步加速器X射线衍射研究了富Ni的Ni50.3Ti29.7Hf20高温形状记忆合金的力学和功能行为。在室温至260 C之间进行了等温拉伸和压缩测试,而在高达700 MPa的选定应力下进行了等压热机械循环实验。马氏体相的等温测试表明,在高于奥氏体终点的温度下,高达1 GPa的测试极限都没有塑性应变,高达3%的施加应变几乎没有完美的超弹性行为。在等压热循环实验中观察到优异的尺寸稳定性,具有大于2.5%的致动应变,而没有明显的残余应变积累(应力小于或等于400 MPa)。由X射线光谱确定的晶格应变证实了在热机械循环期间不存在残余应变积累。即使在未经训练的条件下,该材料在行为上也没有表现出历史或路径依赖性,这与使用同步加速器X射线衍射进行热机械循环后的整体纹理测量一致。变形后的循环显示出在有限的条件下,轻微的双向记忆效应(TWSME)在700 MPa以下的热机械循环后获得了最大0.34%的双向形状记忆应变。

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