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Model-Based Setup Assistant for Progressive Tools

机译:基于模型的渐进工具的设置助手

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In the field of production systems, globalization and technological progress lead to increasing requirements regarding part quality, delivery time and costs. Hence, today's production is challenged much more than a few years ago: it has to be very flexible and produce economically small batch sizes to satisfy consumer's demands and avoid unnecessary stock. Furthermore, a trend towards increasing functional integration continues to lead to an ongoing miniaturization of sheet metal components. In the industry of electric connectivity for example, the miniaturized connectors are manufactured by progressive tools, which are usually used for very large batches. These tools are installed in mechanical presses and then set up by a technician, who has to manually adjust a wide range of punch-bending operations. Disturbances like material thickness, temperatures, lubrication or tool wear complicate the setup procedure. In prospect of the increasing demand of production flexibility, this time-consuming process has to be handled more and more often. In this paper, a new approach for a model-based setup assistant is proposed as a solution, which is exemplarily applied in combination with a progressive tool. First, progressive tools, more specifically, their setup process is described and based on that, the challenges are pointed out. As a result, a systematic process to set up the machines is introduced. Following, the process is investigated with an FE-Analysis regarding the effects of the disturbances. In the next step, design of experiments is used to systematically develop a regression model of the system's behaviour. This model is integrated within an optimization in order to calculate optimal machine parameters and the following necessary adjustment of the progressive tool due to the disturbances. Finally, the assistant is tested in a production environment and the results are discussed.
机译:在生产系统领域,全球化和技术进步导致了对部件质量,交货时间和成本的要求。因此,今天的产量超过了几年前的挑战:它必须非常灵活,生产经济上小的批量尺寸,以满足消费者的需求,避免不必要的股票。此外,增加功能集成的趋势继续导致金属板组分的持续小型化。例如,在电连接的行业中,小型化连接器由渐进工具制造,该工具通常用于非常大的批次。这些工具安装在机械压力机中,然后由技术人员建立,他们必须手动调整各种冲击弯曲操作。扰动如材料厚度,温度,润滑或工具磨损使设置程序复杂化。在越来越多的生产灵活需求的前景中,必须越来越多地处理这种耗时的过程。在本文中,提出了一种基于模型的设置助手的新方法作为解决方案,其示例性地与渐进工具组合应用。首先,逐行工具更具体地,描述了它们的设置过程,并基于此,指出了挑战。结果,介绍了设置机器的系统过程。遵循,通过关于干扰效应的FE分析来研究该过程。在下一步中,实验的设计用于系统性地发展系统行为的回归模型。该模型集成在优化范围内,以便根据干扰计算最佳机器参数以及以下必要的渐进工具的必要调整。最后,助理在生产环境中进行测试,并讨论结果。

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