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Automated design of sheet metal punches for bending multiple parts in a single setup

机译:钣金冲头的自动化设计,可在一次设置中弯曲多个零件

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Sheet metal bending is a process in which bends are formed using a combination of a punch and a die. A very large number of mechanical products such as furniture panels, shelves, cabinets, housing for electro-mechanical devices, etc. are created by using the sheet metal bending process. Bending tools need to satisfy the following two criteria: (1) tools should be able to withstand bending forces, and (2) tool shapes should be such that there is no tool-part interference. In this paper, we describe a methodology for automatically designing shapes of bending punches for bending multiple parts in a single setup. We create parametric geometric models of punches. These parametric models describe the family of possible punch shapes. Using the part geometry and parametric punch shape models, we automatically generated constraints on tool parameters that eliminate the possibility of part-tool interference. We use mixed-integer techniques to identify parameters of punch shapes that result in the maximum punch strength. Finally, we perform strength analysis of the designed punch shape using finite element analysis methods, to verify that the designed punch shape is capable of withstanding the bending forces.
机译:钣金弯曲是指使用冲头和模具的组合来形成弯曲的过程。通过钣金弯曲工艺可制造出大量的机械产品,例如家具面板,搁板,橱柜,机电设备外壳等。弯曲工具需要满足以下两个条件:(1)工具应能够承受弯曲力,并且(2)工具形状应确保没有工具零件的干涉。在本文中,我们描述了一种用于自动设计用于在单个设置中弯曲多个零件的弯曲冲头形状的方法。我们创建冲头的参数化几何模型。这些参数模型描述了可能的冲头形状系列。使用零件几何形状和参数冲头形状模型,我们自动生成了对工具参数的约束,从而消除了零件工具干涉的可能性。我们使用混合整数技术来识别导致最大冲压强度的冲压形状参数。最后,我们使用有限元分析方法对设计的冲头形状进行强度分析,以验证设计的冲头形状能够承受弯曲力。

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