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A systematic approach to coupling disposal of product family design (Part 2): case study

机译:耦合产品家庭设计的系统方法(第2部分):案例研究

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In this part of the work, we described the application of coupling disposal of product family design proposed in Part 1 on bridge crane. Firstly, axiomatic design theory was utilized as framework to analyse functional requirements and select suitable design parameters with "zigzagging" mode. Secondly, the trolley of bridge crane and its safety protection devices were considered as a real case to be analysed in detail. According to the relation between functional requirements and design parameters, axiomatic design matrix of bridge crane was built, and design structure matrix was constructed. Considering comprehensive correlation degree among design parameters including their functional relevance, connection relevance and physical relevance, we clustered and grouped design parameters into modules with less dependent degree in design structure matrix. Then coupling incidence matrix of product family design for the trolley is established, and it is discussed on the coupling inside modules and the coupling among design parameters with different modules. According to analysis on incidence influence degree, implementation sequence of modules is identified and corresponding decoupling method is proposed.
机译:在这部分工作中,我们描述了在桥式起重机第1部分提出的产品系列设计的耦合处理的应用。首先,公理设计理论被用作分析功能要求的框架,并选择合适的设计参数“Zigzagging”模式。其次,将桥式起重机及其安全保护装置的小车视为详细分析的真实情况。根据功能性要求与设计参数之间的关系,建立了桥式起重机的公理设计矩阵,构建了设计结构矩阵。考虑到设计参数之间的全面相关程度,包括它们的功能相关性,连接相关性和物理相关性,我们将设计参数聚集和分组为模块,在设计结构矩阵中具有较少依赖程度的模块。然后建立了推车的产品系列设计的耦合发生率矩阵,并在模块内部讨论和使用不同模块的设计参数之间的耦合。根据发病程度的分析,鉴定了模块的实施序列,并提出了相应的去耦方法。

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