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首页> 外文期刊>Journal de Physique, IV: Proceedings of International Conference >Experimental Study of Mechanical Hysteresis of NiTi During Ferroelastic and Superelastic Deformation
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Experimental Study of Mechanical Hysteresis of NiTi During Ferroelastic and Superelastic Deformation

机译:NiTi在铁弹性和超弹性变形过程中机械滞后的实验研究

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摘要

Shape memory alloys arc known to exhibit a range of novel thermomechanical behaviour associated with (he unique thermoplastic martensitic transformation. Such behaviour includes the superelasticity associated with stress-induced martensitic transformation at relatively high temperatures and the ferroelasticity associated with a martensite rcorientation process at low temperatures. Both the stress-induced martensitic transformation and the martensite reorientation are energy-dissipative processes, i.e., hysteretic between the forward and reverse processes. This work was aimed at studying the hysteretic behaviour of the ferroelasticity and superelasticity observed in a polyctystalline NiTi alloy by carrying out simple shear deformation tests through both major and subloop cycles. It was found that subluops are always closed and enclosed inside the major loop and that the stress hysteresis of a subloop is only dependent on the strain amplitude of the subloop, regardless of the position of the subloop inside the major loop.
机译:已知形状记忆合金会表现出一系列与之相关的新型热机械行为(独特的热塑性马氏体相变。此类行为包括在较高温度下与应力引起的马氏体相变相关的超弹性,以及在低温下与马氏体重新取向过程相关的铁弹性。 。应力诱发的马氏体相变和马氏体重新定向都是耗能过程,即正向和反向过程之间的磁滞现象,这项工作旨在研究通过载运多结晶镍钛合金观察到的铁弹性和超弹性的磁滞行为。在主回路和子回路中进行简单的剪切变形测试后发现,子回路总是闭合并封闭在主回路中,子回路的应力滞后仅取决于子回路的应变幅度,而与位置无关。主循环内的子循环。

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