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首页> 外文期刊>Journal of manufacturing science and engineering: Transactions of the ASME >Predicting Sheet Forming Limit of Aluminum Alloys for Cold and Warm Forming by Developing a Ductile Failure Criterion
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Predicting Sheet Forming Limit of Aluminum Alloys for Cold and Warm Forming by Developing a Ductile Failure Criterion

机译:通过开发延展性故障标准预测铝合金的铝合金的形成极限

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摘要

In this study, the forming limit of aluminum alloy sheet materials is predicted by developing a ductile failure criterion (DFC). In the DFC, the damage growth is defined by Mclintock formula, stretching failure is defined at localized necking (LN) or fracture without LN, while the critical damage is defined, by a so-called effect function, which reflects the effect of strain path and initial sheet thickness. In the first part of this study, the DFC is used to predict forming limit curves (FLCs) of six different aluminum sheet materials at room temperature. Then, the DFC is further developed for elevated temperature conditions by introducing an improved Zener-Hollomon parameter (Z'), which is proposed to provide enhanced representation of the strain rate and temperature effect on limit strain. In warm forming condition, the improved DFC is used to predict the FLCs of Al5083-O and failure in a rectangular cup warm draw process on Al5182 + Mn. Comparison shows that all the predictions match quite well with the experimental measurements. Thanks to the proposal of effect function, the DFC needs calibration only in uniaxial tension, and thus, provides a promising potential to predict forming limit with reduced effort.
机译:在该研究中,通过开发延展性故障标准(DFC)来预测铝合金片材料的成形极限。在DFC中,损伤的生长由McLintock公式定义,拉伸失败在局部颈缩(LN)或没有LN的裂缝处定义,而通过所谓的效果函数定义临界损坏,这反映了应变路径的效果和初始纸张厚度。在本研究的第一部分中,DFC用于预测室温下六种不同铝板材料的限制曲线(FLC)。然后,通过引入改进的齐纳-Hollomon参数(Z'),进一步开发DFC,以提出改进的ZENER-HOLLOMON参数(Z'),这被提出为能应变率和温度效应的增强表示。在恒温形成条件下,改进的DFC用于预测Al5083-O的FLC和在Al5182 + Mn上的矩形杯温度拉伸过程中的失效。比较表明,所有预测与实验测量相匹配。由于效果函数的提议,DFC仅需要在单轴张力中校准,因此提供了预测减少努力的预测形成限制的有希望的潜力。

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