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Study of a modified ECAP die for producing nanostructured Al6060 alloy using 3D finite element simulation

机译:用三维有限元模拟研究改进的ECAP模具以生产纳米结构AL6060合金

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Using Finite Element Method (FEM) simulations is possible to study the homogeneity of deformation in the Equal Channel Angular Pressing (ECAP) process. In this work an investigation about the influence of a modified die on strain distribution in an ecaped Al6060 alloy was carried out. Due to that, tensile stress occurs in the vicinity of upper surface of the specimen in the severe plastic deformation zone, which increases the cracking and fracture tendency of the specimen and impedes further ECAP processing, the conventional ECAP die was modified to eliminate the tensile stress and enhance the compressive stress in the severe plastic deformation zone and reducing the cracking and fracture tendency of the specimen. Finite element analysis demonstrated that the stress state changes from tensile to strongly compressive when using the modified die. The aim of this study is to evaluate the advantages/disadvantages of the modified ECAP die and processing conditions.
机译:使用有限元方法(FEM)模拟可以研究在相等沟道角压(ECAP)过程中变形的均匀性。 在这项工作中,进行了关于修饰模具对杂铜AL6060合金中应变分布的影响的研究。 由此,在严重塑性变形区的样品的上表面附近发生拉伸应力,这增加了样品的裂缝和断裂倾向并阻碍了进一步的ECAP处理,传统的ECAP模具被修改以消除拉伸应力 并增强严重塑性变形区中的压缩应力,降低样品的裂缝和断裂趋势。 有限元分析证明,当使用改性模具时,应力状态从拉伸变为强压缩。 本研究的目的是评估改进的ECAP模具和加工条件的优点/缺点。

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