Application of feature technology to modeling and dimensioning the intermediate geometry of automotive powertrain components

M. Ramesh, D. Dutta, Nagesh Belludi, Derek Yip-Hoi, Paul Wascher
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引用次数: 8

Abstract

Intermediate parts occur in between process steps during machining. In case of parts produced in high volumes, a detail documentation of intermediate geometry is required for the knowledge of operators, for gauging, as a specification for tooling design and for offline CMM programming & simulation. Currently, manually created approximate 2D drawings and/or manually created 3D models are used for representing the intermediate geometry. The commercial process planning systems provide NC code simulation technique for automatically modeling the intermediate parts. In this paper, we outline the challenges posed by this problem in case of large components in automotive powertrain. We present a system that uses feature technology to address them. The solid models of intermediate parts are generated by sequentially subtracting volumetric machining features from the cast part model and they are dimensioned using reference geometry. This system automatically generates models of intermediate parts independent of the design history and the NC code. It also makes use of the process plan data generated prior to the availability of final and cast part model.
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特征技术在汽车动力总成中间几何形状建模及尺寸标注中的应用
在机械加工过程中,中间零件出现在工序之间。在大批量生产零件的情况下,需要一份详细的中间几何形状文档,以便操作员了解,测量,作为工具设计和离线三坐标测量机编程和仿真的规范。目前,手工创建的近似2D图纸和/或手工创建的3D模型用于表示中间几何形状。商业化的工艺规划系统为中间零件的自动建模提供了NC代码仿真技术。在本文中,我们概述了在汽车动力系统中大型部件的情况下,这一问题所带来的挑战。我们提出了一个使用特征技术来解决这些问题的系统。中间零件的实体模型是通过从铸件模型中依次减去体积加工特征来生成的,并使用参考几何来确定它们的尺寸。该系统不依赖于设计历史和NC代码自动生成中间零件的模型。它还利用了在最终件和铸件模型可用之前生成的工艺计划数据。
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Application of feature technology to modeling and dimensioning the intermediate geometry of automotive powertrain components Discrete models for geometric objects Sketch- and constraint-based design of B-spline surfaces Solving spatial basic geometric constraint configurations with locus intersection Reconstruction of feature volumes and feature suppression
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