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Three-dimensional Finite Element Analysis Of Multi-pass Equal-channel Angular Extrusion Of Aluminum Aa1050 With Split Dies

机译:剖分式铝AA1050多道等径角挤压的三维有限元分析

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摘要

Equal-channel angular pressing (ECAP) is an effective method to produce bulk nanostructured materials with high strength and toughness. Many experimental researches using a conventional solid die have been done so far, but few attempts on finite element analysis have been undertaken to exploit load predictions of the multi-pass ECAP because of difficulty involved with handling the boundary and processing conditions. In this study, split dies were newly designed to reduce the flash formation and the accuracy of finite element simulations of the multi-pass ECAP was improved by introducing better friction condition and saturated flow stress model considering the effect of routes and number of passes. Experiments with commercially available pure aluminum alloy (AA1050) of a square cross-section were carried out using the split dies newly designed for routes A, B_C and C up to three passes. The forming simulation tool, CAMPform3D, was currently used to investigate the effect of routes and number of passes in terms of prediction of the forming load and deformation behavior. It was found out that predicted loads obtained from current numerical simulations were reasonably accurate compared to the measured load data for the three-pass ECAP.
机译:等通道角挤压(ECAP)是生产具有高强度和韧性的块状纳米结构材料的有效方法。迄今为止,已经完成了许多使用常规固态模具的实验研究,但是由于难以处理边界和加工条件,因此很少进行有限元分析的尝试来利用多程ECAP的载荷预测。在这项研究中,新设计了对开模以减少飞边的形成,并考虑了路径和通过次数的影响,通过引入更好的摩擦条件和饱和流应力模型来提高多道次ECAP有限元模拟的精度。使用新设计的针对A,B_C和C路线的最多3个道次的对开模,对具有方形横截面的市售纯铝合金(AA1050)进行了实验。目前,使用成形仿真工具CAMPform3D来研究路径和通过次数的影响,以预测成形载荷和变形行为。结果发现,与三通ECAP的实测负载数据相比,从当前数值模拟获得的预测负载是相当准确的。

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