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Digitalization of Process Planning of Spot Welding in Body-in-white

机译:白车身点焊工艺规划的数字化

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Process planning of spot welding for body-in-white automobile structures involves several experimental (physical) welding trials to set the process parameters. These experimental trials are crucial in ensuring the quality and efficiency of the process. However, due to the iterative nature of the work, running several experiments is costly and time consuming prolonging the overall development cost and time significantly. To minimize the cost and time, replacing the physical tests by digital (virtual) tests is an established approach although not often applied for spot welding. However, for a long chain of development process with several iterative loops, this is not a trivial task considering the availability of information and continuity of the work flow. This paper reports the work and results of an industrial case study conducted on spot welding of a body-in-white car pillar in a Swedish auto manufacturer. The aim of the study is to investigate and propose the necessary conditions required to replace a physical test by virtual tests in terms of validity and expedited execution of the process. Information sharing, knowledge reuse and streamlining the work flow have found to be critical condition for valid and rapid virtual tests.
机译:白车身结构的点焊工艺规划涉及多个实验(物理)焊接试验,以设置工艺参数。这些实验性试验对于确保过程的质量和效率至关重要。但是,由于工作的迭代性质,运行多个实验非常昂贵且耗时,从而大大延长了总体开发成本和时间。为了最大程度地降低成本和时间,尽管不常用于点焊,但用数字(虚拟)测试代替物理测试是一种既定方法。但是,对于具有多个迭代循环的一长串开发过程,考虑到信息的可用性和工作流程的连续性,这并不是一件容易的事。本文报告了瑞典一家汽车制造商对白车身支柱进行点焊的工业案例研究的工作和结果。该研究的目的是调查并提出在有效性和加快执行过程方面用虚拟测试代替物理测试所需的必要条件。信息共享,知识重用和简化工作流程已成为有效且快速的虚拟测试的关键条件。

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