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Module partition for 3D CAD assembly models: a hierarchical clustering method based on component dependencies

机译:3D CAD装配模型的模块分区:基于组件依赖性的分层聚类方法

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Reusing previous CAD assembly models directly in new product development is almost impossible in One-of-a-Kind Production (OKP) in which customer requirements vary from one to another. As such, modularisation of CAD assembly models is required to facilitate modular design for OKP. However, to the authors' best knowledge, there has been no research carried out on modularisation of CAD assembly models so far. To bridge this gap and make the best use of existing CAD models, this paper proposes a novel module partition approach, to group existing CAD assembly models into modules based on component dependencies. In this approach, an extraction algorithm was developed to extract assembly information from a given assembly model directly, by using automated programmable interfaces of CAD software tools. The extracted information is processed to generate the component design structure matrix (DSM) representing hierarchical relations and dependency strengths between components. Four popular hierarchical clustering methods were used to work with the component DSM to produce results of module partition. A case study was carried out to illustrate the proposed methods and demonstrate their feasibility. It enables OKP companies to respond rapidly to changing customer requirements and develop customised products in a short period.
机译:在客户需求各不相同的一种生产中(OKP),几乎不可能在新产品开发中直接重用以前的CAD装配模型。因此,需要对CAD装配模型进行模块化以促进OKP的模块化设计。但是,据作者所知,到目前为止,尚未进行有关CAD装配模型模块化的研究。为了弥合这一差距并充分利用现有的CAD模型,本文提出了一种新颖的模块划分方法,可以基于组件依赖性将现有的CAD装配模型分组为模块。在这种方法中,开发了一种提取算法,可以通过使用CAD软件工具的自动可编程界面直接从给定的装配模型中提取装配信息。处理提取的信息以生成表示组件之间的层次关系和依赖强度的组件设计结构矩阵(DSM)。四种流行的分层聚类方法用于与组件DSM配合使用以产生模块划分的结果。进行了案例研究,以说明所提出的方法并证明其可行性。它使OKP公司能够快速响应不断变化的客户需求并在短时间内开发定制产品。

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