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Strategies to optimize the part transport in crossbar transfer presses

机译:优化横移式压力机中零件运输的策略

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In order to keep the production of wide body components profitable, even in high-wage countries, the technology of crossbar transfer presses has been implemented into the stamping plants of automobile companies. In particular with large compliant parts, dynamic problems during the transportation have to be seen as one of the limiting factors for the production stroke rate. So far, there are no tools to investigate these problems in order to optimize the material handling. Based on the interaction of different simulation systems, a solution has been developed to predict these problems as early as during the construction process of a die. It becomes possible to calculate the ideal positions for the part holding suction-cups and to analyze the dynamic behavior of the stamping part during transportation, in order to enhance the productivity of the production plant. The results of the generic methodology have been verified by experimental research on compliant sheet metal parts of automotive industry.
机译:为了即使在高工资国家也能使宽车身部件的生产保持盈利,在汽车公司的冲压厂中已经采用了横杆式压力机技术。特别是对于大型柔性零件,必须将运输过程中的动态问题视为生产行程速率的限制因素之一。到目前为止,还没有工具可以研究这些问题以优化材料处理。基于不同仿真系统的交互作用,已经开发出一种解决方案,可以在模具制造过程中尽早预测这些问题。可以计算出保持吸盘的零件的理想位置,并分析在运输过程中冲压零件的动态行为,从而提高生产设备的生产率。通用方法的结果已通过对汽车行业合规钣金零件的实验研究得到验证。

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