灵活性(工程)
配置设计
计算机科学
背景(考古学)
自动化
产品设计
产品(数学)
过程(计算)
系统工程
装配设计
制造工程
工业工程
工程制图
工程类
机械工程
几何学
古生物学
操作系统
统计
生物
可制造性设计
数学
作者
Roberto Raffaeli,Maura Mengoni,Michele Germani
标识
DOI:10.1017/s0890060412000388
摘要
Abstract The competitive market forces companies to offer tailored products to meet specific customer needs. To avoid wasting time, design efforts generally address the configuration of existing solutions, without producing substantial design modifications. Configuration tools are used to achieve customized products starting from a common platform. Many approaches have been successfully proposed in literature to configure products. However, in the mechanical field they need further investigation in order to be efficiently linked to computer-aided design technologies. Research is focused on tools and methods to automatically produce geometrical models and improve the flexibility of the continuous product updating process. In this context, this paper aims to combine product configuration approaches with design automation techniques in order to support design activities of products to fulfill specific requirements. The approach is based on entities called configurable virtual prototypes. Three different domains are managed and connected via configurable virtual prototypes: product specifications, geometrical data, and product knowledge. In particular, geometry recognition rules are used to identify the parameterization of parts and the assembly mating constraints. The approach is exemplified through an industrial case study where a tool has been developed on the basis of the described method. Advantages of the system are shown in terms of achieved product configuration efficiency.
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