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INTEGRATION OF CAD, CAPP AND PROCESS MODELING USING XML TECHNOLOGIES

机译:使用XML技术集成CAD,CAPP和过程建模

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Integration of CAD (Computer Aided Design), CAPP (Computer Aided Process Planning) and Process Modeling activities plays a vital role in enabling concurrent product and process design. Typically each of these functions is performed in its own dedicated software environment. The integration will require interfacing several disconnected processes and software components built in different languages, and platforms. This paper presents an integration methodology, validated using a case study, in which a steering housing was analyzed and its process planning and design tasks were integrated using several software tools. The first integration task was to generate a feature based CAD model (in Unigraphics) and map these design features to a set of manufacturing features. Feature based design was performed using the Horizontal Modeling approach developed at Delphi. Features developed using this approach were then mapped to manufacturing features using APPS, a software tool developed at Delphi Dynamics and Propulsion Innovation Center. This task involved interrogation of the geometric CAD model to generate geometric and tolerance information and represent them in a format suitable for feature-based process planning. The second task of integration is generation of feasible "production-intent" process plans. This task is performed using APPS and IMPlanner process planner, a knowledge based software tool developed at Ohio University. The third and final task of integration is automated generation of in-process CAD models. This task involved the integration of Delphi process design techniques to generate CAD models (in Unigraphics) to represent the component at each stage of the manufacturing process. Evaluation of these steps through the case study has identified the strengths and weaknesses of the proposed integration methodology, which is reported in this paper.
机译:CAD集成(计算机辅助设计),CAPP(计算机辅助流程规划)和流程建模活动在启用并发产品和流程设计方面发挥着重要作用。通常,这些函数中的每一个都在其自己的专用软件环境中执行。集成将需要接地连接多种不同语言构建的多个断开连接的流程和软件组件。本文介绍了一体化方法,使用案例研究验证,其中分析了转向外壳,并使用多个软件工具集成了其过程规划和设计任务。第一个集成任务是生成基于功能的CAD模型(在Unigraphics中)并将这些设计功能映射到一组制造功能。基于特征的设计是使用Delphi开发的水平建模方法进行的。然后使用应用程序映射使用这种方法开发的功能,使用应用程序,是在Delphi Dynamics和推进创新中心开发的软件工具。此任务涉及几何CAD模型的询问,以生成几何和公差信息,并以适合于基于特征的过程规划的格式表示它们。整合的第二任务是产生可行的“生产 - 意图”过程计划。此任务是使用Apps和Implanner Process Planner执行的,该工具在俄亥俄大学开发。集成的第三个和最终任务是自动化的过程中的CAD模型。此任务涉及Delphi进程设计技术的集成,以生成CAD模型(在Unigraphics中)来表示制造过程的每个阶段的组件。通过案例研究评估这些步骤已经确定了本文中提出的整合方法的优势和缺点。

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