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Type-E disassembly line balancing problem with multi-manned workstations

机译:多载工作站的型式拆卸线平衡问题

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Recovering the end-of-life (EOL) products helps companies reduce the purchasing cost for goods and materials that can be removed from EOL products and reused. This also contributes to the efforts aiming at reducing the environmental consequences of hazardous materials. Disassembly lines play a vital role in the disassembling process of EOL products. This research introduces the Type-E multi-manned disassembly line balancing problem and proposes efficient linear and non-linear models to solve the problem. The main contribution of this work is the simultaneous optimization of the two conflicting objectives, i.e. cycle time and the number of workstations to maximize the efficiency of disassembly lines. Another contribution of the work is that the workstations may operate in a multi-manned environment (with more than one worker in a workstation) in certain conditions to maximize the line efficiency. The problem is defined and modelled mathematically. Numerical examples are exhibited to illustrate the solutions for problems. A comprehensive computational study is conducted to solve the test problems using the proposed models and the results are compared to the literature. It is observed that handling the Type-E objective provides a clear advantage to maximize the line efficiency. Furthermore, allowing the multiplication of the capacity of the workstations help improve the line efficiency enormously. This is thanks to the increased opportunity in the process of assigning tasks to workstations.
机译:恢复生活结束(EOL)产品有助于公司降低可以从EOL产品中取出的商品和材料的购买成本并重新使用。这也有助于旨在减少危险材料环境后果的努力。拆卸线在EOL产品的拆卸过程中起着至关重要的作用。本研究介绍了E类型的多载拆卸线平衡问题,提出了高效的线性和非线性模型来解决问题。这项工作的主要贡献是同时优化两个冲突目标,即循环时间和工作站的数量,以最大限度地提高拆卸线的效率。这项工作的另一个贡献是,在某些条件下,工作站可以在多载物环境中运行(工作站中的多个工人),以最大化线路效率。问题是在数学上定义和建模的。表现出数值示例以说明问题的解决方案。进行了全面的计算研究,以解决使用所提出的模型的测试问题,结果与文献进行了比较。观察到处理E型目标提供了明显的优势,以最大化线路效率。此外,允许工作站的容量的乘法有助于提高线效。这感谢将任务分配给工作站的过程中的增加。

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