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The Suitability of Analytical and Numerical Methods for Developing Clinching Processes with Thick Sheet Metal

机译:用厚钣金开发铆接工艺的分析和数值方法的适用性

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At present, the use of clinching is mainly restricted to thin sheet metal. Here the joining technology is used for assemblies in mass production due to its great coast efficiency. However, the branches of industry working with thick sheet metal (utility and rail vehicle engineering, shipbuilding and general structural steel engineering) represent a major potential for using clinching technology. Unfortunately, the suitability of clinching for connecting jobs with substantially greater sheet metal thicknesses has neither been sufficiently investigated, nor are there suitable toolsets among system manufacturers that are adapted to the larger overall sheet metal thicknesses. Instead, the state-of-the-art for ascertaining tools for larger sheet metal thicknesses and point dimensions is trial and error accepting the high costs caused by producing a large number of tools and experiments. This paper demonstrates some analytical approaches to this problem and how suitable they are to describing the process of clinching in comparison to the potential of calculation with FEA.
机译:目前,使用铆接主要限于薄薄的金属板。这里,由于其巨大的海岸效率,加入技术用于大规模生产中的组件。然而,工业分支与厚薄的金属板(公用事业和轨道车辆工程,造船和一般结构钢铁工程)合作,代表了采用临床技术的主要潜力。遗憾的是,既没有充分地研究了以基本上更大的钣金厚度连接作业的适用性也没有足够的系统制造商之间的合适工具,其适用于较大的整体金属板厚度。相反,用于更大钣金厚度和点尺寸的确定工具是试验和误差,接受由生产大量工具和实验引起的高成本。本文展示了这种问题的一些分析方法以及它们如何描述与FEA计算的计算潜力相比的铆接过程。

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