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Concepts and Requirements for Flexible Disassembly Systems for Drive Train Components of Electric Vehicles

机译:灵活拆卸系统的概念和要求,用于电动车辆的驱动火车组件

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An increase in the sales number of battery electric vehicles within the last year can be recorded. At the end-of-life these vehicles require a reliable disassembly for recycling or remanufacturing. On the one hand, drivetrain components of those vehicles contain valuable resources and thus are mainly relevant for recycling or remanufacturing. On the other hand, the automated disassembly of especially electric motors and Li-ion battery systems encloses major challenges. Especially the high number of variants and the unknown specifications and conditions of the components are challenging points for the disassembly system. Conventional automated disassembly systems provide limited flexibility and adaptability for the disassembly of these products. Within this contribution two robot-based flexible disassembly systems are systematically derived for Li-ion battery modules and supplementary electric motors. Both products are analysed and the product-specific challenges and requirements are identified. The state of the art regarding flexible disassem-bly systems is captured using the methodology of a morphological box. Four subsystems are identified: Kinematic, Tools, Workpiece fixation, Safety system. Based on the results, concepts for disassembly systems for both Li-ion battery modules and supplementary electric motors are developed and presented in detail. Especially the structure and functionality of both systems are explained. This is followed by an assessment of the approaches and an identification of limitations as well as possible optimization potentials.
机译:可以记录去年内的电池电动汽车销售数量的增加。在生活结束时,这些车辆需要可靠的拆卸来回收或再制造。一方面,这些车辆的动力传动系统部件含有有价值的资源,因此主要用于回收或再制造。另一方面,特别是电动机和锂离子电池系统的自动拆卸封闭了主要挑战。特别是拆卸系统的大量变体和未知的规格和条件是具有挑战性的。传统的自动拆卸系统为这些产品的拆卸提供有限的灵活性和适应性。在此贡献中,系统地导出了两个基于机器人的柔性拆卸系统,用于锂离子电池模块和补充电动机。分析了两种产品,并确定了产品特定的挑战和要求。使用形态盒的方法捕获有关柔性Dissem-Bly系统的技术的状态。确定了四个子系统:运动,工具,工件固定,安全系统。基于结果,开发并详细介绍了锂离子电池模块和补充电动机的拆卸系统的概念。特别是解释了两个系统的结构和功能。随后是评估方法和识别限制以及可能的优化潜力。

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