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首页> 外文期刊>International Journal of Mechanical Sciences >Calculation of forming limit diagrams using Hill's 1993 yield criterion
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Calculation of forming limit diagrams using Hill's 1993 yield criterion

机译:使用Hill的1993年屈服准则计算成形极限图

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摘要

Based on the analysis proposed by Jones and Gillis (JG), forming limit diagrams (FLDs) are calculated from idealization of sheet deformation into three stages: (I) homogeneous deformation up to maximum load, (II) deformation localization under constant load, and (III) local necking with precipitous drop in load. In the calculation, Hill's 1993 yield criterion is used. Using this yield criterion and the JG model, effects of materials parameters such as ratio of uniaxial to equi-biaxial yield stress, strain hardening, strain rate sensitivity and plastic anisotropy on the shape and level of forming limit curves are studied. In addition, the capability of the JG model to predict limit strains is demonstrated through comparison of calculated results with experimental data for the interstitial free (IF) steel and aluminum alloys 3003-O and 8014-O. It is concluded that although the model predicts the effect of material parameters reasonably well, the calculated limit strains are higher than the experimental FLDs. The observed discrepancy may be attributed to the assumption of planar isotropy, cavitation and the nature of texture present in the sheets. Due to the overestimation of the predictions, care must be taken when using this approach for industrial purposes.
机译:根据Jones和Gillis(JG)提出的分析,从板变形的理想化分为三个阶段来计算成形极限图(FLD):( I)均匀变形直至最大载荷;(II)恒定载荷下的变形局部;以及(III)局部缩颈,负载急剧下降。在计算中,使用了Hill的1993年屈服准则。使用该屈服准则和JG模型,研究了材料参数(如单轴与等双轴屈服应力之比,应变硬化,应变速率敏感性和塑性各向异性)对成形极限曲线的形状和水平的影响。此外,通过将无间隙(IF)钢和铝合金3003-O和8014-O的计算结果与实验数据进行比较,证明了JG模型预测极限应变的能力。结论是,尽管该模型可以很好地预测材料参数的影响,但计算出的极限应变高于实验FLD。观察到的差异可能归因于平面各向同性,气穴现象和片材中存在的纹理的性质。由于对预测的高估,因此在将这种方法用于工业目的时必须小心。

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