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Feature-based non-manifold modeling system to integrate design and analysis of injection molding products

机译:基于特征的非流形建模系统,集成了注塑产品的设计和分析

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Current CAE systems used for both the simulation of the injection molding process and the structural analysis of plastic parts accept solid models as geometric input. However, abstract models composed of sheets and wireframes are still used by CAE systems to carry out more analyses more efficiently. Therefore, to obtain an adequate abstract model, designers often have to simplify and idealize a detailed model of a part to a specific level of detail and/or abstraction. For such a process, we developed a feature-based design system based on a non-manifold modeling kernel supporting feature-based multi-resolution and multi-abstraction modeling capabilities. In this system, the geometric models for the CAD and CAE systems are merged into a single master model in a non-manifold topological representation, and then, for a given level of detail and abstraction, a simplified solid or non-manifold model is extracted immediately for an analysis. For a design change, the design and analysis models are modified simultaneously. As a result, this feature-based design system is able to provide a more integrated environment for the design and analysis of plastic injection molding parts.
机译:当前用于注塑过程仿真和塑料零件结构分析的CAE系统接受实体模型作为几何输入。但是,CAE系统仍使用由图纸和线框组成的抽象模型来更有效地执行更多分析。因此,为了获得适当的抽象模型,设计人员通常必须将零件的详细模型简化和理想化为特定的细节和/或抽象级别。对于这样的过程,我们开发了基于非流形建模内核的基于特征的设计系统,该内核支持基于特征的多分辨率和多抽象建模能力。在该系统中,将CAD和CAE系统的几何模型以非流形拓扑表示形式合并为单个主模型,然后,对于给定的详细程度和抽象水平,提取了简化的实体或非流形模型立即进行分析。对于设计更改,可以同时修改设计和分析模型。结果,这个基于特征的设计系统能够为塑料注射成型零件的设计和分析提供更集成的环境。

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