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首页> 外文期刊>Journal of Materials Science >Analyses of route Bc equal channel angular pressing and post-equal channel angular pressing behavior by the finite element method
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Analyses of route Bc equal channel angular pressing and post-equal channel angular pressing behavior by the finite element method

机译:路径Bc等通道角挤压和后等通道角挤压行为的有限元分析

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摘要

Equal channel angular pressing (ECAP) process provides an efficient procedure for achieving ultrafine grained microstructures with excellent mechanical properties in metallic materials. In this article, a simulation scheme for predicting the mechanical behavior during and after ECAP was proposed. The proposed scheme was applied for interstitial-free (IF) steels, which are widely used for the automobile body applications. Plastic deformation behavior during several passes of ECAP in route Bc, including such aspect as deformed geometry, corner gap, forming load and strain uniformity, was predicted. Tensile testing responses of the ECAP-processed IF steel, including strain hardening, onset of necking, and post-necking behavior, were analyzed using the finite element method and compared with the experimental results. The predicted tensile curves, ultimate tensile strength, and elongation varying with the number of ECAP passes were in good agreement with experimental results. The computational scheme developed was demonstrated to successfully predict not only the plastic deformation behavior during ECAP but also the mechanical properties of the ECAP-processed material.
机译:等通道角压(ECAP)工艺为金属材料中具有优异机械性能的超细晶粒微结构提供了有效的程序。在本文中,提出了一种用于预测ECAP期间和之后的机械性能的仿真方案。拟议的方案适用于无间隙(IF)钢,广泛用于车身应用。预测了ECAP在路线Bc的几次通过期间的塑性变形行为,包括变形的几何形状,拐角间隙,成形载荷和应变均匀性等方面。使用有限元方法分析了ECAP处理的IF钢的拉伸测试响应,包括应变硬化,缩颈的开始和缩颈后的行为,并将其与实验结果进行了比较。预测的拉伸曲线,极限拉伸强度和伸长率随ECAP通过次数的变化而变化,与实验结果吻合良好。证明了开发的计算方案不仅可以成功预测ECAP期间的塑性变形行为,而且还可以成功预测ECAP处理的材料的机械性能。

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