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Microstructural Modeling of Fatigue Fracture of Shape Memory Alloys at Thermomechanical Cyclic Loading

机译:热机械循环载荷疲劳内存合金疲劳骨折的微观结构建模

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A microstructural model of shape memory alloys (SMA) describing their deformation and fatigue fracture is presented. A new criterion of fracture has been developed which takes into account the effect of hydrostatic pressure, deformation defects and material damage. It is shown that the model can describe the fatigue fracture of SMA under various thermomechanical cycling regimes. Results of calculating the number of cycles to failure at thermocycling under a constant stress, at symmetric two-sided cyclic deformation, at straining-unloading cycles, at cycling in the regime of the thermodynamic cycles of a SMA working body in the hard (strain controlled) and soft (stress controlled) working cycles, is studied. Results of calculating the number of cycles to failure are presented for different parameters of these cycles.
机译:介绍了描述其变形和疲劳裂缝的形状记忆合金(SMA)的微结构模型。已经开发出一种新的骨折标准,其考虑了静水压力,变形缺陷和材料损伤的影响。结果表明,该模型可以在各种热机械循环制度下描述SMA的疲劳骨折。在恒定应力下计算在恒定应力下的热循环失效的循环次数,以卸载卸载循环在硬质卸载循环中,在硬质循环的循环中循环在SMA工作体的热力学循环的状态下(应变控制研究了和软(应力控制)工作循环。为这些循环的不同参数提供计算失败循环次数的结果。

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