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Advanced Material Testing in Support of Accurate Sheet Metal Forming Simulations

机译:支持准确的钣金成型模拟的先进材料测试

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This presentation is a review of experimental methods for accurately measuring and modeling the anisotropic plastic deformation behavior of metal sheets under a variety of loading paths: biaxial compression test, hydraulic bulge test, biaxial tension test using a cruciform specimen, multiaxial tube expansion test using a closed-loop electrohydraulic testing machine for the measurement of forming limit strains and stresses, combined tension-shear test, and in-plane stress reversal test. Observed material responses are compared with predictions using phenomenological plasticity models to highlight the importance of accurate material testing. Special attention is paid to the plastic deformation behavior of sheet metals commonly used in industry, and to verifying the validity of constitutive models based on anisotropic yield functions at a large plastic strain range. The effects of using appropriate material models on the improvement of predictive accuracy for forming defects, such as springback and fracture, are also presented.
机译:本介绍是在各种装载路径下准确测量和建模金属板的各向异性塑性变形行为的实验方法的综述:双轴压缩试验,液压凸起试验,双轴张力试验使用十字形标本,使用A的多轴管膨胀试验闭环电液试验机用于测量形成限位菌株和应力,组合张力剪切试验和面内应力反转试验。将观察到的材料响应与使用现象学塑性模型的预测进行比较,以突出精确材料测试的重要性。工业常用板金属的塑性变形行为,以及验证基于各向异性产量函数在大塑料应变范围内的塑料变形行为的特别关注。还提出了使用适当材料模型对形成缺陷的预测精度的改善的影响,例如回弹和骨折。

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