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Effect of the determination method of the material parameters on the accuracy of the hole expansion simulation for cold rolled steel sheet

机译:材料参数确定方法对冷轧钢板孔膨胀模拟精度的影响

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Hole expansion forming of a cold rolled steel sheet is investigated both experimentally and analytically to clarify the effects of material models on the predictive accuracy of finite element analyses (FEA). The multiaxial plastic deformation behavior of a cold rolled steel sheet with a thickness of 1.2 mm was measured using a servo-controlled multiaxial tube expansion testing machine for the range of strain from initial yield to fracture. Tubular specimens were fabricated from the sheet sample by roller bending and laser welding. Many linear stress paths in the first quadrant of stress space were applied to the tubular specimens to measure the contours of plastic work in stress space up to a reference plastic strain of 0.24 along with the directions of plastic strain rates. The anisotropic parameters and exponent of the Yld2000-2d yield function (Barlat et al., 2003) were optimized to approximate the contours of plastic work and the directions of plastic strain rates. The hole expansion forming simulations were performed using the different model identifications based on the Yld2000-2d yield function. It is concluded that the yield function best capturing both the plastic work contours and the directions of plastic strain rates leads to the most accurate predicted FEA.
机译:实验和分析地研究了冷轧钢板的空穴膨胀形成,以阐明材料模型对有限元分析(FEA)的预测精度的影响。使用伺服控制的多轴管膨胀试验机测量厚度为1.2mm的冷轧钢板的多轴塑性变形行为,用于从初始产率到骨折的菌株。通过辊弯曲和激光焊接从片样品制造管状试样。将压力空间的第一象限中的许多线性应力路径施加到管状标本上,以测量应力空间的塑性工作的轮廓,直至0.24的参考塑性应变以及塑性应变率的方向。优化YLD2000-2D产量功能(Barlat等,2003)的各向异性参数和指数,以近似塑料工作的轮廓和塑料应变率的方向。利用基于YLD2000-2D产量函数的不同模型识别进行了孔膨胀形成模拟。得出结论是,最佳捕获塑料工作轮廓和塑料应变率方向的收益函数导致最准确的预测的FEA。

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