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Effects Of Product Design On Assembly Lines Performances: a Concurrent Engineering Approach

机译:产品设计对装配线性能的影响:并行工程方法

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Purpose - The paper's aim is to assess the impact of product related features on the performances of assembly line manufacturing systems, also providing a specific Design for Manufacturing and Assembly rating index to assess the goodness of a product design solution with respect to assembly line performances. Design/methodology/approach - A computer simulation-based parametric analysis was carried out to assess the impact of four major product-related parameters. 216 different assembly line balance problem instances were evaluated. Findings allowed to develop a DFMA rating index specific for assembly line manufacturing as well as design guidelines. Findings - Assembly sequence degrees of freedom and the ratio of the average task duration to the maximum duration are the most influencing parameters. While the former should be maximized, only a moderate task duration variability was found beneficial. The influence of other factors resulted less marked and changing on a case-specific basis. Research limitations/implications - Complex interactions between product design features and line performances prevent generalization. The performed numerical experimentation, although extensive, remains somewhat limited respect all possible practical situations. The proposed rating index should be utilized while maintaining an overall perspective about the mutual influence of all parameters. Some suggested guidelines imply a trade off with traditional DFMA guidelines. Practical implications - Product designers are given useful insights, tools and guidelines to develop better producible products. With the proposed ranking index a designer can easily rate his choices when selecting assembly tasks and sequences, as well as rank alternative product designs solutions. Originality/value - The paper presents an original discussion about the impact of product design choices on assembly line performances. The developed DFMA rating index and guidelines are new.
机译:目的-本文的目的是评估产品相关功能对装配线制造系统性能的影响,还提供特定的制造和装配设计等级指数,以评估产品设计解决方案相对于装配线性能的优劣。设计/方法/方法-进行了基于计算机仿真的参数分析,以评估与产品相关的四个主要参数的影响。评估了216个不同的装配线平衡问题实例。研究结果允许开发特定于装配线制造的DFMA等级指数以及设计指南。结果-装配顺序的自由度以及平均任务持续时间与最大持续时间之比是影响最大的参数。尽管前者应最大化,但只有适度的任务持续时间变化被发现是有益的。其他因素的影响导致的标记较少,并且根据具体情况有所变化。研究局限性/含义-产品设计功能和生产线性能之间的复杂相互作用会阻止泛化。进行的数值实验尽管广泛,但在所有可能的实际情况下仍然有些局限。在维持有关所有参数相互影响的总体观点的同时,应利用建议的评级指数。一些建议的准则意味着要与传统的DFMA准则进行权衡。实际意义-为产品设计师提供有用的见识,工具和指南,以开发更好的可生产产品。利用建议的排名索引,设计师可以轻松地在选择装配任务和顺序时对自己的选择进行评分,并对其他产品设计解决方案进行排名。原创性/价值-本文提出了有关产品设计选择对装配线性能影响的原始讨论。发达的DFMA评级指数和指南是新的。

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