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Modelling of localised thinning features in the hydroforming of micro-tubes using the crystal-plasticity FE method

机译:使用晶体塑性有限元方法对微管液压成形中的局部变薄特征进行建模

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摘要

The wall thickness of hydro-formed micro-tubes is not uniform due to the low ratio of the wall thickness and the grain size. The features of localised thinning are different from those of the traditional hydroforming process, and this is related directly to the ratio of the wall thickness and the grain size of the material, and also to the amount of deformation. Macro-mechanics finite element (FE) modelling cannot be used to simulate such effects encountered in micro-tube hydroforming processes. In this paper, a simplified plane-strain crystal-plasticity finite element (CPFE)-based modelling technique has been developed and used to capture the localised thinning features in the hydroforming of micro-tubes. The grain structures within the tube workpiece, and their distributions and orientations, are generated automatically using the developed VGRAIN system. A set of crystal-viscoplasticity models is implemented in ABAQUS/Explicit FE code through the user-defined sub-routine, VUMAT. Single-crystal and multi-crystal structures have been studied, and the localised thinning has been analysed for different microstructures of the material using the CPFE modelling technique. It is confirmed from the analysis that the localised thinning in the hydroforming of micro-tubes is affected significantly by the microstructure and grain orientations of the material.
机译:液压成型的微管的壁厚由于壁厚和晶粒尺寸的比率低而不均匀。局部减薄的特性与传统的液压成型工艺不同,这直接与材料的壁厚比和晶粒尺寸之比以及变形量有关。宏观力学有限元(FE)建模不能用于模拟微管液压成型过程中遇到的这种影响。在本文中,已开发了一种基于简化的平面应变晶体塑性有限元(CPFE)的建模技术,并用于捕获微管液压成型中的局部变薄特征。管工件内的晶粒结构及其分布和方向是使用开发的VGRAIN系统自动生成的。通过用户定义的子例程VUMAT,在ABAQUS / Explicit FE代码中实现了一组晶体粘塑性模型。研究了单晶和多晶结构,并使用CPFE建模技术对材料的不同微观结构进行了局部减薄分析。通过分析证实,在微管液压成形中的局部变薄受到材料的微观结构和晶粒取向的显着影响。

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