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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 >Experimental investigation to thermal-mechanical behavior of Ni_(47)Ti_(44)Nb_9 SMA under pure tension and pure torsion
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Experimental investigation to thermal-mechanical behavior of Ni_(47)Ti_(44)Nb_9 SMA under pure tension and pure torsion

机译:Ni_(47)Ti_(44)Nb_9 SMA在纯拉伸和纯扭转作用下热力学行为的实验研究

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摘要

The thermal-mechanical properties of shape memory alloy Ni_(47)Ti_(44)Nb_9 under pure tension and pure torsion up to an equivalent strain of 16% at M_s + 30℃ and other temperatures, and the subsequent heating-induced recovery were investigated experimentally with an MTS 858 tensile-torsional testing system. It was found that the equivalent stress-strain curves under pure tension are distinctly different from that under pure torsion, the stress drop and the following plateau in the σ-ε curves as well as the macroscopic martensite band on the surface of the specimens under pure tension were not found in the results under pure torsion, where the shear stress develops monotonically with the increase of shear strain. In both pure tension and pure torsion, the equivalent stress for forward transformation increases with the increase of temperature. During heating-induced recovery, inverse transformation occurs at the onset of heating at a small rate but develops intensively at A_s. The equivalent critical transformation stresses and the inverse transformation temperatures in both pure tension and pure torsion are similar, which may be beneficial for the analysis of the thermal-mechanical response of the material subjected to complex loading histories. As the temperature is sufficiently high so that the applied stress would not be able to induce martensitic transformation and the following reorientation, plastic deformation may take place as the applied stress reaches the yield stress. The comparison between the thermal-mechanical behavior under pure tension and that under pure torsion implies the rationality of the application of von-Mises equivalent rule in describing the constitutive behavior of the material.
机译:研究了形状记忆合金Ni_(47)Ti_(44)Nb_9在纯拉伸和纯扭转下在M_s + 30℃和其他温度下的等效应变高达16%时的热机械性能,并研究了随后的加热诱导恢复使用MTS 858拉伸扭转测试系统进行实验。结果表明,纯拉力下的等效应力-应变曲线与纯扭力下的应力-应变曲线明显不同,σ-ε曲线的应力降和随后的平稳期以及纯净条件下试样表面的宏观马氏体带在纯扭力的结果中没有发现拉应力,其中剪切应力随着剪切应变的增加而单调发展。在纯张力和纯扭转中,向前变形的等效应力都随温度的升高而增加。在加热引起的恢复期间,逆相变在加热开始时以小速率发生,但在A_s处强烈发展。纯拉伸和纯扭转中的等效临界转变应力和逆转变温度都相似,这可能有利于分析承受复杂载荷历史的材料的热机械响应。由于温度足够高,以至于施加的应力将无法诱发马氏体相变和随后的重新取向,当施加的应力达到屈服应力时,可能发生塑性变形。在纯张力和纯扭力下的热力学行为的比较表明,在描述材料的本构行为中应用冯·米塞斯等效规则的合理性。

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