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Fluid Automation - A Definition and an Application in Remanufacturing Production Systems

机译:流体自动化 - 再制造生产系统的定义和应用

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Production systems must be able to quickly adapt to changing requirements. Especially in the field of remanufacturing, the uncertainty in the state of the incoming products is very high. Several adaptation mechanisms can be applied leading to agile and changeable production systems. Among these, adapting the degree of automation with respect to changeover times and high investment costs is one of the most challenging mechanisms. However, not only long-term changes, but also short-term adaptations can lead to enormous potentials, e.g. when night shifts can be supported by robots and thus higher labor costs and unfavorable working conditions at night can be avoided. These changes in the degree of automation on an operational level are referred to as fluid automation, which will be defined in this paper. The mechanisms of fluid automation are presented together with a case study showing its application on a disassembly station for electrical drives.
机译:生产系统必须能够快速适应不断变化的要求。 特别是在再制造领域,进入产品状态的不确定性非常高。 可以应用几种适应机制,导致敏捷和可变的生产系统。 其中,适应转换时间和高投资成本的自动化程度是最具挑战性的机制之一。 但是,不仅长期变化,而且短期适应也会导致巨大的潜力,例如巨大的潜力。 当机器人可以支持夜班时,可以避免较高的劳动力成本和夜间不利的工作条件。 操作水平自动化程度的这些变化被称为流体自动化,将在本文中定义。 流体自动化的机制与案例研究一起呈现,示出了其对电动驱动器的拆卸站的应用。

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