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Deformation Behavior Study of Multi-Pass ECAE Process for Fabrication of Ultrafine or Nanostructured Bulk Materials

机译:多道次ECAE工艺制造超细或纳米结构体材料的变形行为研究

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摘要

Severe plastic deformation (SPD) is an efficient approach for producing ultrafine or nanostructured bulk materials. Equal channel angular extrusion (ECAE) is the most effective SPD solution for material nanostructuring, as material billet undergoes severe and large deformation and the grains are efficiently broken up in the process. To improve material nanostructuring. the ECAE die design and process configuration are critical. The deformation behavior study through FE simulation in ECAE process provides basic and useful information for optimizing die design and process determination. In this research, the deformation behavior for three different die design scenarios is studied and the related deformation mechanisms and nanostructuring performance are investigated via FE simulation. Through multi-pass simulation, the optimal design scenario is then identified. The simulation results reveal deformation phenomena, and nanostructuring performance of the designs and the corresponding process can be recommended accordingly for improving die and process performance.
机译:严重的塑性变形(SPD)是生产超细或纳米结构的散装材料的有效方法。等通道角挤压(ECAE)是用于材料纳米结构的最有效的SPD解决方案,因为材料坯料会发生严重而大的变形,并且在加工过程中会有效地破碎晶粒。改善材料的纳米结构。 ECAE模具设计和工艺配置至关重要。通过ECAE过程中有限元模拟的变形行为研究为优化模具设计和过程确定提供了基础和有用的信息。在这项研究中,研究了三种不同模具设计方案的变形行为,并通过有限元模拟研究了相关的变形机理和纳米结构性能。通过多遍仿真,可以确定最佳设计方案。仿真结果揭示了变形现象,可以相应地推荐设计和相应工艺的纳米结构性能,以改善模具和工艺性能。

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