Integration of design and manufacture of complex geometries through solid and surface modeling techniques

T.C. Ramaraj , Evangelos C. Eleftheriou , Rama Ramaraj
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引用次数: 5

Abstract

This paper presents the concepts of integrating a solids and surface modeler database with a manufacturing postprocessor in the production of complex shapes and geometries encountered in high technology manufacturing. The postprocessor translates information between a standard IGES file and the solid modeler to be fed to a 5 axis CNC machine. This process is demonstrated through an example which generates the mold cavities of an injection molding toll. IGES surface entities are created individually for each face of the solid model and the postprocessor creates a CNC program based on ruled surfaces corresponding to the IGES surface information. A second method is presented in the transfer of information between a surface modeler, a design database and the postprocessor. The design database provides information for blade shapes which are altered periodically. The surface modeler builds the complete impeller shape based on cross sectional geometries, overall design dimensions and number of blades on a given impeller. The postprocessor transfers the geometrical data from the surface modeler into a 5 axis CNC machine to manufacture the impeller blades. Blades are exclusively defined by ruled surfaces, so, the tool design and dimensions are critical to the success of the machining operation.

通过实体和表面建模技术集成复杂几何形状的设计和制造
本文介绍了在高技术制造中遇到的复杂形状和几何形状的生产中,将固体和表面建模器数据库与制造后处理程序集成的概念。后处理器在标准IGES文件和实体建模器之间转换信息,以馈送到5轴数控机床。通过一个注塑模具型腔生成的实例说明了该工艺。IGES曲面实体是为实体模型的每个面单独创建的,后处理程序根据IGES曲面信息对应的直纹曲面创建CNC程序。第二种方法是在表面建模器、设计数据库和后处理程序之间传递信息。设计数据库提供周期性变化的叶片形状信息。表面建模器根据给定叶轮上的横截面几何形状、总体设计尺寸和叶片数量来构建完整的叶轮形状。后置处理器将表面建模器的几何数据传输到5轴数控机床中,以制造叶轮叶片。刀片完全由直纹面定义,因此,刀具的设计和尺寸对加工操作的成功至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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