首页> 外文会议>International ESAFORM Conference on Material Forming >A Comparative Study on the Forming Limit Diagram Prediction between Marciniak-Kuczynski Model and Modified Maximum Force Criterion by Using the Evolving Non-associated Hill48 Plasticity Model
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A Comparative Study on the Forming Limit Diagram Prediction between Marciniak-Kuczynski Model and Modified Maximum Force Criterion by Using the Evolving Non-associated Hill48 Plasticity Model

机译:Marciniak-kuczynski模型与改进的最大力标准的形成限制图预测的比较研究,使用了不相关的山地48塑性模型

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Experimental and numerical investigations on the forming limit diagram (FLD) of a ferritic stainless steel were performed in this study. The FLD of this material was obtained by Nakajima tests. Both the Marciniak-Kuczynski (MK) model and the modified maximum force criterion (MMFC) were used for the theoretical prediction of the FLD. From the results of uniaxial tensile tests along different loading directions with respect to the rolling direction, strong anisotropic plastic behaviour was observed in the investigated steel. A recently proposed anisotropic evolving non-associated Hill48 (enHill48) plasticity model, which was developed from the conventional Hill48 model based on the non-associated flow rule with evolving anisotropic parameters, was adopted to describe the anisotropic hardening behaviour of the investigated material. In the previous study, the model was coupled with the MMFC for FLD prediction. In the current study, the enHill48 was further coupled with the MK model. By comparing the predicted forming limit curves with the experimental results, the influences of anisotropy in terms of flow rule and evolving features on the forming limit prediction were revealed and analysed. In addition, the forming limit predictive performances of the MK and the MMFC models in conjunction with the enHill48 plasticity model were compared and evaluated.
机译:在本研究中进行了铁素体不锈钢的成形极限图(FLD)对模具的实验和数值研究。该材料的FLD是通过Nakajima测试获得的。 Marciniak-Kuczynski(MK)模型和改进的最大力标准(MMFC)都用于FLD的理论预测。从沿不同负载方向相对于轧制方向的单轴拉伸试验结果,在研究的钢中观察到强各向异性塑料行为。最近提出的各向异性不相关的山丘48(enhill48)塑性模型,其基于非相关的流量规则具有演变各向异性参数的传统Hill48模型,用于描述所研究的材料的各向异性硬化行为。在先前的研究中,该模型与MMFC耦合以进行FLD预测。在目前的研究中,ChONILL48还与MK模型相结合。通过将预测的成形限制曲线与实验结果进行比较,揭示并分析了各向异性在流动规则和不断发展的特征方面的影响。此外,比较和评估了MK和MMFC模型的形成极限预测性能和MMFC模型。

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