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首页> 外文期刊>Intelligent Control and Automation >An Integrated Geometric Modeling Methodology for 2.5D Cylindrical Prismatic Part for Computer Aided Process Planning
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An Integrated Geometric Modeling Methodology for 2.5D Cylindrical Prismatic Part for Computer Aided Process Planning

机译:用于计算机辅助工艺计划的2.5D圆柱棱柱形零件的集成几何建模方法

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The field of solid modeling has created numerous techniques for unambiguous computer representations of three-dimensional objects. Its data structures and algorithms have been used in a broad range of applications: Computer-Aided Design and Computer-Aided Manufacturing (CAD/ CAM), robotics, computer vision, computer graphics and visualization, virtual reality, etc. This research paper is used to generate process plan from feature-based modeling, based on an integrated geometric modeling system that supports both feature-based modeling and information storage. Present system is developed only for milling components and limited to selective machining features for prismatic components and further implemented for more machining features to develop algorithms for modeling the components through the input of machining features. As a result, feature information is directly available to downstream activities, and feature extraction is no longer needed. The various systematic steps involved in this approach are study of Design, identification of Features, selection of Processes, Tools and Machines, Machining and Inspection [DFPTMMI]. Machining features generated in the design stage are recognized and stored under the Visual Basic control of CATIA software ActiveX interface. Algorithms are developed for individual features and these algorithms are embedded in Visual Basic forms. This system is discussed and suited for 2.5 Dimensional part approach, however, that can be extended to 3 dimensional prismatic part and complex features machining. Finally a process planning chart has been presented as a model process planning.
机译:实体建模领域已经为三维对象的明确计算机表示创建了许多技术。它的数据结构和算法已在广泛的应用中使用:计算机辅助设计和计算机辅助制造(CAD / CAM),机器人技术,计算机视觉,计算机图形和可视化,虚拟现实等。基于支持基于特征的建模和信息存储的集成几何建模系统,从基于特征的建模生成过程计划。本系统仅针对铣削零件而开发,并限于棱柱形零件的选择性加工特征,并且进一步针对更多加工特征而实施,以开发用于通过输入加工特征对零件建模的算法。结果,特征信息可直接用于下游活动,并且不再需要特征提取。此方法涉及的各种系统步骤包括设计研究,特征识别,过程选择,工具和机器,机加工和检查[DFPTMMI]。在设计阶段生成的加工特征将被识别并存储在CATIA软件ActiveX界面的Visual Basic控制下。针对单个功能开发了算法,并且这些算法以Visual Basic形式嵌入。讨论了该系统,该系统适用于2.5维零件加工,但是可以扩展到3维棱柱零件和复杂特征加工。最后,过程计划图已作为模型过程计划提出。

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