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首页> 外文期刊>International Journal of Material Forming: Official Journal of the European Scientific Association for Material Forming - ESAFORM >Study of forming limit diagram (FLD) prediction of anisotropic sheet metals using Gurson model in M-K method
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Study of forming limit diagram (FLD) prediction of anisotropic sheet metals using Gurson model in M-K method

机译:基于Gurson模型的M-K法各向异性钣金成形极限图(FLD)预测研究

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摘要

This study uses the Marciniak and Kuczynski (M-K) method to present an analytical forming limit diagram (FLD) for sheet metals. The procedure for the analytical FLD prediction is described in detail and step-wise manner, and an algorithm is written using MATLAB. First, an appropriate algorithm is determined to establish the theoretical analyses, and various anisotropic yield functions, such as Hill's 48, Barlat 89, and Hosford, are considered. The predicted FLDs are compared with experiments involving a typical AA6016-T4 aluminum alloy. Second, the Gurson model that considers damage growth is implemented when Hosford is the yield function, as Hosford criterion predicts the best comparable analytical FLD with experiments among the yield functions. Third, a parametric study is performed to investigate the effects of parameters on the FLD prediction. Results indicate that an extremely low value for the initial void volume fraction in the safe and groove zones has minimal effects on the FLD prediction. Lastly, the values of void volume fractions are calculated assuming no geometrical imperfections and the imperfection is because of higher void volume fraction in groove zone than that in safe zone.
机译:本研究使用 Marciniak 和 Kuczynski (M-K) 方法提出了钣金的解析成形极限图 (FLD)。详细描述了FLD的分析预测过程,并使用MATLAB编写了算法。首先,确定合适的算法来建立理论分析,并考虑各种各向异性产率函数,如Hill's 48、Barlat 89和Hosford。将预测的FLD与涉及典型AA6016-T4铝合金的实验进行了比较。其次,当 Hosford 为屈服函数时,实现了考虑损伤增长的 Gurson 模型,因为 Hosford 准则预测了屈服函数中具有实验的最佳可比性分析 FLD。第三,通过参数研究研究了参数对FLD预测的影响。结果表明,安全区和凹槽区的初始空隙体积分数值极低对FLD预测的影响最小。最后,假设没有几何缺陷,计算空隙体积分数的值,并且缺陷是由于凹槽区的空隙体积分数高于安全区。

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