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SHEET MODELING AND THICKENING OPERATIONS BASED ON NON-MANIFOLD BOUNDARY REPRESENTATIONS

机译:基于非流形边界表示的钣金建模和增厚操作

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This paper describes sheet modeling and thickening operations based on a non-manifold topological representation for efficient solid modeling of thin-walled plastic or sheet metal parts. Since the existing methods have adopted boundary representations for solid models, it is difficult to represent the exact adjacency relations between topological entities in a sheet model, and to describe a mixture of wireframe and sheet objects that appear in the intermediate steps of sheet modeling operations. Accordingly, it is difficult to devise and implement the algorithms for sheet modeling and thickening operations. To solve these problems, we introduce a non-manifold boundary representation as a topological framework and propose a sheet thickening algorithm by presenting variations to a general non-manifold offset algorithm that is based on the mathematical definition of offsets. In addition, to facilitate sheet modeling operations, not only a set of generalized Euler operators for non-manifold models are provided, but also sheet modeling capabilities, including adding, bending, and punching functions with two-dimensional curve editors.
机译:本文介绍了一种基于非流形拓扑表示的钣金建模和增厚操作,以有效地对薄壁塑料或钣金零件进行实体建模。由于现有方法已经采用了实体模型的边界表示法,因此很难表示图纸模型中拓扑实体之间的确切邻接关系,并且难以描述出现在图纸建模操作中间步骤中的线框和图纸对象的混合体。因此,难以设计和实现用于片材建模和增厚操作的算法。为了解决这些问题,我们引入了非流形边界表示作为拓扑框架,并通过对基于偏移的数学定义的通用非流形偏移算法进行了介绍,提出了一种纸页增厚算法。此外,为了简化图纸建模操作,不仅提供了一组用于非流形模型的广义Euler运算符,而且还提供了图纸建模功能,包括使用二维曲线编辑器的添加,弯曲和冲压功能。

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