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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Feature-based interaction: an identification and classification methodology
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Feature-based interaction: an identification and classification methodology

机译:基于特征的交互:一种识别和分类方法

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摘要

Features are an established means of adding non-geometric information and extra geometric semantics to conventional computer aided design (CAD) systems. For some time it has been realized that, although feature-based modelling is necessary for the next generation of integrated design and manufacturing systems, the inherent feature interactions pose a difficulty in representing and manipulating geometric designs. This paper presents a structured geometric spatial feature interaction identificationmethod based on a broad multilevel classification. Feature interaction definitions and classifications have been surveyed and it is evident that, although many feature interaction classifications have been proposed, there is a lack of a general framework. The classification presented here encompasses existing feature interference cases found in the literature and defines a singular framework that leads to a general classification structure. The framework is presented and applied at three different levelsand each interaction case is defined by feature parameters rather than just geometric entities. The restrictions often found in other research concerning contacton-contact and concave/convex situations are avoided. The resulting classification is easyto understand and implement because it uses simple rules based on commonly available Boolean operators. Finally, an example component is presented and the advantages, uses and applications of the classification scheme are discussed.
机译:功能是一种向常规计算机辅助设计(CAD)系统添加非几何信息和额外的几何语义的既定手段。一段时间以来,人们已经意识到,尽管对于下一代集成设计和制造系统而言,基于特征的建模是必需的,但是固有的特征交互却给表示和操纵几何设计带来了困难。本文提出了一种基于广义多级分类的结构化几何空间特征交互识别方法。已经调查了特征交互作用的定义和分类,很明显,尽管已经提出了许多特征交互作用的分类,但是缺少通用框架。此处介绍的分类涵盖了文献中发现的现有特征干扰案例,并定义了导致通用分类结构的单一框架。该框架在三个不同的层次上进行了介绍和应用,并且每个交互案例都是由特征参数定义的,而不仅仅是几何实体。避免了其他研究中经常发现的关于接触/非接触和凹/凸情况的限制。生成的分类易于理解和实现,因为它使用基于常用布尔运算符的简单规则。最后,给出了一个示例组件,并讨论了分类方案的优点,用途和应用。

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