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Thermomechanically transforming Notched NiTi Thin ribbon: Effect of Martensitic Transformation on Stress Gradients

机译:热机械转换缺口NITI薄带:马氏体变换对应力梯度的影响

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In this work, we used numerical simulations to investigate the effect of thermally induced forward martensitic transformation (MT) under constant load on the stress redistribution around stress risers. Finite element simulations of stress redistribution around two-sided notches in a thin NiTi ribbon subjected to constant tensile force and homogeneous cooling from austenite to martensite were performed. Changes in stress gradients around the notches were analyzed with regard to heterogeneity of thermomechanically driven MT. A parametric study was performed in order to understand the effect of transformation strains, Young's modulus of martensite and notch radius on the magnitude of notch-tip stresses after the completion of MT. We found that forward MT critically amplifies the initial elastic stress gradients around the notch. The increase in magnitude of notch-tip stress is closely related to elastic deformation in martensite needed to accommodate the transformation strain in the surrounding notch unaffected zone. This approximation holds for notch radii being small compared to the ribbon width. For large radii MT is more homogeneous, the notchtip is more shielded from transforming surroundings and, hence, the notch-tip stress approach the nominal stress.
机译:在这项工作中,我们使用了数值模拟来研究热诱导的前后马氏体转变(MT)在恒定负荷下对应力提升管的应力再分布的影响。进行有限元模拟在经过恒定拉力和奥氏体均匀冷却至马氏体的薄NITI带中的双面凹口周围的压力再分布。关于热机驱动MT的异质性分析凹口周围的应力梯度的变化。进行参数学研究以了解转化菌株,年轻的马氏体模量和凹口半径的效果,在完成Mt之后的缺口尖端应力的大小。我们发现前进的MT批判性地放大凹口周围的初始弹性应力梯度。凹口尖端应力的幅度的增加与马氏体中的弹性变形紧密相关,以适应周围的切口未受影响的区域中的转化应变。与色带宽度相比,该近似容纳陷波半径。对于大的半径Mt更加均匀,NotchTip从变换周围环境中更屏蔽,因此,凹口尖端应力接近标称应力。

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