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Optimal tool angles for equal channel angular extrusion of strain hardening materials by finite element analysis

机译:应变硬化材料等通道角挤压的最佳刀具角度的有限元分析

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Equal channel angular extrusion (ECAE) is a novel deformation process capable of imparting a large amount of plastic strain to bulk material through the application of uniform simple shear. ECAE die geometry, material properties and process conditions influence the shear deformation behavior during extrusion that in turn governs the microstructure and mechanical properties of the extruded materials. Finite element analysis, the most appropriate technique was used to analyze the deformation behavior of extruded materials without neglecting important and realistic factors like strain hardening behavior of the material, frictional conditions and speed of the process. In this study the deformation behavior of material, dead zone/corner gap formation and strain homogeneity achieved in the samples during ECAE were studied by using commercial finite element code Abaqus/Explicit. The influence of tool angles, strain hardening behavior of material and friction between the billet and die was considered for simulations. Results showed that the optimal strain homogeneity in the sample with lower dead zone formation, without involving any detrimental effects, can be achieved with channel angle of 90° and outer corner angle of 10°.
机译:等通道角向挤压(ECAE)是一种新颖的变形过程,能够通过施加均匀的简单剪切力使散装材料产生大量的塑性应变。 ECAE模具的几何形状,材料特性和工艺条件会影响挤出过程中的剪切变形行为,进而决定着挤出材料的微观结构和力学性能。有限元分析是使用最合适的技术来分析挤压材料的变形行为,而不忽略重要而现实的因素,例如材料的应变硬化行为,摩擦条件和过程速度。在这项研究中,使用商业有限元代码Abaqus / Explicit,研究了ECAE期间样品在材料中的变形行为,死区/角隙的形成以及应变均匀性。模拟时考虑了刀具角度,材料的应变硬化行为以及坯料与模具之间的摩擦的影响。结果表明,在通道角为90°且外角为10°的情况下,具有较低死区形成的样品中的最佳应变均质性没有任何有害影响。

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