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Enhancement of dimple formability in sheet metals by 2-step forming

机译:通过两步成型提高钣金中的凹痕可成型性

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In this study, a 2-step stamping model with an additional 1st stamping tool is proposed to reduce stamping flaws in the curved parts of dimples in nuclear fuel spacer grids. First, the strains in the curved part of the dimple are analyzed and compared with strain solutions for pure bending. A reference 2D FE (finite element) model of the 1-step stamping is established, and the corresponding maximum strain is obtained. FE solutions are obtained for various process variable values for the 1st stamping tool used in the 2-step stamping model. Based on these solutions and applying the RSM (response surface method), strains are expressed as a function of process variables. This function then serves to evaluate optimum process variable values. Finally, by transferring these optimum values to a 3D FE model, we confirm the enhanced formability of the proposed 2-step stamping model.
机译:在这项研究中,提出了带有附加的第一个冲压工具的两步冲压模型,以减少核燃料隔板中凹痕弯曲部分的冲压缺陷。首先,分析凹痕弯曲部分的应变,并将其与纯弯曲的应变解进行比较。建立了第一步冲压的参考二维有限元模型,并获得了相应的最大应变。针对两步冲压模型中使用的第一个冲压工具的各种过程变量值,获得了有限元解决方案。基于这些解决方案并应用RSM(响应面法),应变表示为过程变量的函数。然后,该功能用于评估最佳过程变量值。最后,通过将这些最佳值转移到3D FE模型中,我们确认了所提出的两步冲压模型的增强的可成形性。

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