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The numerical investigation of the material behavior of high strength sheet materials in incremental forming

机译:高强度板材渐进成形中材料行为的数值研究

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Springback is an inevitable phenomenon in sheet metal forming and has been found to reduce with an increasing number of forming steps.In this study the effect of incremental forming on springback is analyzed for DP780 steel.The cyclic hardening characteristics of the DP780 steel are determined by fitting the experimental moment curvature data of a cyclic pure bending test using Abaqus Standard.The change in elastic modulus with pre-strain is also considered in the material model.Using the developed material model a V- die forming process is numerically analyzed for single and multiple-step forming,and the effect on springback determined.The numerical results show that there is a reduction in springback with an increasing number of forming steps,and that this may be due to the plastic strain accumulated in the blank during the sequential loading steps in the bending region.A very good agreement has been achieved between the simulation and the experimental results.The present study seems to offer an effective approach to increase the accuracy of the springback prediction and provide a greater insight into the nature of the springback in the incremental forming process.
机译:回弹是钣金成形中不可避免的现象,并且随着成形步骤的增加而回弹减少。在本研究中,分析了DP780钢的渐进成形对回弹的影响。通过以下方法确定DP780钢的循环硬化特性拟合使用Abaqus Standard进行的循环纯弯曲测试的实验弯矩曲率数据。材料模型中还考虑了弹性模量随预应变的变化。使用已开发的材料模型,对V型模具成形过程进行了数值分析数值结果表明,随着成形步骤数量的增加,回弹降低,这可能是由于在顺序加载步骤中坯料中累积的塑性应变引起的。模拟和实验结果之间取得了很好的一致性。提供一种有效的方法来提高回弹预测的准确性,并提供对增量成型过程中回弹性质的更深入了解。

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