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首页> 外文期刊>Polymer engineering and science >Simple shear plastic deformation behavior of polycarbonate plate due to the equal channel angular extrusion process. I. Finite element methods modeling
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Simple shear plastic deformation behavior of polycarbonate plate due to the equal channel angular extrusion process. I. Finite element methods modeling

机译:由于等通道角挤压工艺,聚碳酸酯板的简单剪切塑性变形行为。一,有限元方法建模

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摘要

Simple shear plastic deformation behavior of polycarbonate (PC) plates due to the novel equal channel angular extrusion (ECAE) process is modeled using a commercial finite element methods (FEM) package. The true stress and true strain contour plots and the strain rate variation across the PC plate during the ECAE process are analyzed. The FEM results correlate well with the experimental findings. The present study indicates that the novel ECAE process is effective in producing a high degree of simple shear plastic deformation across the extruded polycarbonate plate. The high degree of plastic deformation due to ECAE induces a high level of nearly uniform molecular orientation across the extruded PC plate. As a result, significantly improved physical and mechanical properties in PC are expected. The simple shear plastic deformation behavior of PC plate, as a function of extrusion rate and temperature, is investigated. The significance of the ECAE process for fabricating polymer parts is also discussed.
机译:使用商业有限元方法(FEM)软件包对由于新型等通道角挤压(ECAE)工艺导致的聚碳酸酯(PC)板的简单剪切塑性变形行为进行了建模。分析了ECAE过程中PC板上的真实应力和真实应变轮廓图以及应变率变化。有限元分析结果与实验结果很好地相关。本研究表明,新型ECAE工艺可有效地在挤出的聚碳酸酯板上产生高度的简单剪切塑性变形。由于ECAE引起的高度塑性变形会在整个挤出的PC板上引起高水平的几乎均匀的分子取向。结果,期望PC中的物理和机械性能显着改善。研究了PC板的简单剪切塑性变形行为,该行为是挤出速率和温度的函数。还讨论了ECAE工艺对制造聚合物零件的重要性。

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