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An investigation of a new 2D CDM model in predicting failure in HFQing of an automotive panel

机译:研究一种新的二维CDM模型以预测汽车面板HFQing的故障

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摘要

In this paper a comparative analysis of failure prediction when using the solution heat treatment cold die forming and quenching process, known as HFQ™, for forming an aluminium alloy AA6082 automotive panel part (bulkhead panel), is presented. An experimental programme has been designed and a series of tests have been carried out to investigate the effect of process parameters on the success of forming the complex-shaped automotive panel component using the high strength aluminium alloy. A set of unified viscoplastic plane-stress continuum damage mechanics (2D-CDM) constitutive equations was calibrated for AA6082 over a temperature range of 450 ºC–525 ºC and strain rates of 0.1, 1.0 and 10 s-1, and then was integrated into the commercial finite element code, LS-DYNA, via a user-defined material subroutine, UMAT, for the forming process simulation. The results show that the CDM model can be used to provide accurate formability and failure predictions.
机译:本文介绍了使用固溶热处理冷模成型和淬火工艺(称为HFQ™)形成铝合金AA6082汽车面板零件(牛头面板)时的失效预测的对比分析。设计了一个实验程序,并进行了一系列测试,以研究工艺参数对使用高强度铝合金成功形成复杂形状的汽车面板部件的影响。在温度范围为450 ºC–525ºC,应变速率为0.1、1.0和10 s-1的情况下,针对AA6082校准了一套统一的粘塑性平面应力连续介质损伤力学(2D-CDM)本构方程,然后将其整合到商业有限元代码LS-DYNA,通过用户定义的材料子程序UMAT进行成型过程仿真。结果表明,CDM模型可用于提供准确的可成形性和失效预测。

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