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Design of internal pins in injection mold CAD via the automatic recognition of undercut features

机译:通过自动识别底切特征来设计注塑模具CAD中的内部销

摘要

A methodology to deal with the automatic design of internal pins in injection mold CAD via the automatic recognition of undercut features is developed. The approach to automatically identifying the undercut features is first proposed. For the given parting directions, all the inner and outer undercut features are identified based on the topological relationship of geometrical entities. The outer edge loop, which represents the largest cross-section boundary along the given parting directions, is extracted and patched up. The surfaces of molding are then identified based on the classifications of their geometrical entities. To identify the deep inner undercuts in the molding, the projection of the main core, internal pins and their bounding boxes along the parting direction and the pin withdrawal direction are generated. Upon determination of whether the bounding boxes of any two internal pins and the main core projection have intersection area, the deep inner undercuts are located. The complete methodology is finally implemented and verified through case studies and the efficiency of the methodology in handling complex molded parts is thus illustrated.
机译:开发了一种通过自动识别底切特征来处理注塑模具CAD内部销钉自动设计的方法。首先提出了自动识别底切特征的方法。对于给定的分型方向,根据几何实体的拓扑关系来标识所有内部和外部底切特征。提取并修补外边缘环,该外边缘环代表沿给定分型方向的最大横截面边界。然后根据其几何实体的分类来识别成型件的表面。为了识别模制件中的深内部底切,生成了主芯,内部销及其边界盒沿分模方向和销退出方向的投影。在确定任意两个内部销的边界盒和主芯突出部是否具有相交区域时,就定位了深的内部底切。最终通过案例研究实施并验证了完整的方法,从而说明了该方法在处理复杂成型零件中的效率。

著录项

  • 作者

    Ran JQ; Fu MW;

  • 作者单位
  • 年度 2010
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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