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3D finite element analysis of strain inhomogeneity in equal channel angular pressing of aluminum

机译:铝等沟道角压应变不均匀性的3D有限元分析

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Equal Channel Angular Pressing (ECAP) is widely being used to investigate the process of producing the ultra fine grained microstructure in metals and alloys. A sound knowledge of the plastic deformation and strain distribution is necessary for understanding the relationships between strain inhomogeneity and die geometry. Considerable research has been reported on finite element analysis of this process (ECAP). However, the two-dimensional models are not suitable due to the geometry of the dies, especially in cylindrical ones. In the present work, three dimensional simulations of ECAP process was carried out for two ECAP passes in cold condition, with channel angle of 120°, for strain hardening aluminum alloy cold deformation using DEFORM software. Strain inhomegenetity is presented and discussed for all cases. Stress distribution is presented and discussed for all cases. Dimension of the billet will be 5mm radius and 80 mm length. Stress, strain, displacements, velocities etc will be discussed here.
机译:等于沟道角压(ECAP)广泛用于研究在金属和合金中产生超细粒粒细胞的过程。对理解应变不均匀性和模具几何形状之间的关系是必要的塑性变形和应变分布的声音知识。已经报告了该过程的有限元分析(ECAP)的相当大的研究。然而,由于模具的几何形状,特别是在圆柱形的模型,二维模型不适合。在本作的工作中,对冷条件的两个ECAP过程进行了三维模拟,具有120°的沟道角度,用于应变硬化铝合金冷变形,使用变形软件。呈现和讨论所有病例的菌株。呈现和讨论了应力分布的所有情况。坯料的尺寸为5mm半径和80毫米长度。这里将讨论应力,应变,位移,速度等。

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