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首页> 外文期刊>International Journal of Mechanical Sciences >Study of anomalous hardening in NiAL single crystals at intermediate temperatures by FEA
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Study of anomalous hardening in NiAL single crystals at intermediate temperatures by FEA

机译:通过有限元分析研究中温下NiAL单晶的异常硬化

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The hardening model based on the dislocation mechanics is employed to study the experimentally observed high tensile elongations of NiAl along the [110] orientation at intermediate temperatures. In the hardening model proposed, a mobility of dislocation is assumed to be restricted to glide through the slip plane by forest dislocation and thermally activated cross-slip event. Overall deformation behavior of NiAl was greatly influenced by temperature-dependent dislocation mobility that both experimental and simulated yield stresses decreased as temperature increased. The results of simulation showed anomalous hardening behaviors analogous to those of experiment at certain circumstances. This behavior occurred due to the hardening contributions generated by cross-slip events that disable the dislocation motion in the primary slip systems. By comparing simulation results with experiments, it is confirmed that the proposed hardening model can represent anomalous tensile elongations due to the hardening by forest dislocations and cross-slip events.
机译:基于位错力学的硬化模型用于研究在中间温度下NiAl沿[110]取向观察到的高拉伸伸长率。在提出的硬化模型中,假定位错的迁移率被森林位错和热激活的横向滑动事件限制在滑行面上滑动。 NiAl的整体变形行为受温度依赖性位错迁移率的影响很大,随着温度的升高,实验和模拟的屈服应力均降低。仿真结果表明,在某些情况下,异常硬化行为与实验相似。发生这种现象是由于交叉滑动事件所产生的硬化作用所致,而交叉滑动事件使主要滑动系统中的位错运动失效。通过将模拟结果与实验结果进行比较,可以确认所提出的硬化模型可以表示由于森林错位和交叉滑动事件而导致的硬化异常伸长率。

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