首页> 外文会议>ASME international mechanical engineering congress;IMECE'03 >DECOMPOSITION-BASED ASSEMBLY SYNTHESIS OF MULTIPLE STRUCTURES FOR MINIMUM PRODUCTION COST
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DECOMPOSITION-BASED ASSEMBLY SYNTHESIS OF MULTIPLE STRUCTURES FOR MINIMUM PRODUCTION COST

机译:最小成本的多种结构的基于分解的组装综合

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An extension of decomposition-based assembly synthesis for structural modularity is presented where the early identification of shareable components within multiple structures is posed as an outcome of the minimization of estimated production costs. The manufacturing costs of components are estimated under given production volumes considering the economies of scale. Multiple structures are simultaneously decomposed and the types of welded joints at component interfaces are selected from a given library, in order to minimize the overall production cost and the reduction of structural strength due to the introduction of joints. A multi-objective genetic algorithm is utilized to allow effective examination of trade-offs between manufacturing cost and structural strength. A new joint-oriented representation of structures combined with a "direct" crossover is introduced to enhance the efficiency of the search. A case study with two aluminum space frame automotive bodies is presented to demonstrate that not all types of component sharing are economically justifiable under a certain production scenario.
机译:提出了基于分解的装配综合的扩展,以实现结构模块化,其中尽早确定了多个结构中的可共享组件是将估计生产成本降至最低的结果。考虑到规模经济,在给定的产量下估算组件的制造成本。同时分解多个结构,并从给定的库中选择组件接口处的焊接接头类型,以最大程度地降低总体生产成本,并由于引入接头而降低结构强度。利用多目标遗传算法可以有效检查制造成本和结构强度之间的折衷。引入了结合“直接”交叉的新的面向关节的结构表示,以提高搜索效率。提出了以两个铝制空间框架汽车车身为例的案例研究,以证明在特定的生产场景下,并非所有类型的部件共享在经济上都是合理的。

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