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首页> 外文期刊>Journal of Manufacturing and Materials Processing >Improvement of Numerical Modelling Considering Plane Strain Material Characterization with an Elliptic Hydraulic Bulge Test
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Improvement of Numerical Modelling Considering Plane Strain Material Characterization with an Elliptic Hydraulic Bulge Test

机译:考虑平面应变材料表征的椭圆液压凸起试验数值模拟的改进

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A precise characterization of material behavior is necessary to identify yield criteria or hardening laws for an accurate numerical design of sheet metal forming processes. Current models like Yld2000-2d or Hill’48 do not consider the plane strain state, though this condition is primary cause of failure in deep drawing. It is anticipated that an improved yield locus contour which considers the stress under plane strain conditions leads to better results in numerical simulations of a deep drawing process. Within this contribution, a new experimental setup to characterize both principal stress components under plane strain as additional input data for material modelling is presented. Therefore, hydraulic bulge tests are carried out with a novel elliptical die, which implements a plane strain condition. Moreover, the improvement of the material model is investigated exemplarily for the three sheet metal alloys DC06, DP600 and AA5182. The resulting material parameters are used to identify the yield locus for plane strain by varying the yield locus exponent of Yld2000-2d. The results prove that considering plane strain yield locus results in a better sheet thickness distribution in comparison to conventional modelling of the deep drawing process.
机译:为了确定屈服准则或硬化规律,以对钣金成形工艺进行精确的数值设计,必须对材料的行为进行精确的表征。当前的模型(例如Yld2000-2d或Hill'48)不考虑平面应变状态,尽管这种情况是深拉伸失败的主要原因。可以预料,考虑到平面应变条件下的应力,改进的屈服轨迹轮廓会在深冲过程的数值模拟中带来更好的结果。在此贡献中,提出了一种新的实验装置,可将平面应变下的两个主应力分量表征为材料建模的附加输入数据。因此,用一种新型的椭圆模具进行了液压膨胀试验,该椭圆模具实现了平面应变条件。此外,示例性地研究了三种钣金合金DC06,DP600和AA5182的材料模型的改进。通过改变Yld2000-2d的屈服位点指数,所得的材料参数可用于识别平面应变的屈服点。结果证明,与传统的深冲过程建模相比,考虑平面应变屈服轨迹可导致更好的板材厚度分布。

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