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Feature-based design for process planning of machining processes with optimization using genetic algorithms

机译:基于特征的设计,用于通过遗传算法进行优化的加工过程计划

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The development of a feature-based design environment that can be applied in the concept-to-manufacturing stages of the machining process is explained. It is broadly divided into four modules, namely, feature-based design (FBD) environment, virtual factory environment (VFE), operation-based feature mapping (OBFM) and optimization using genetic algorithms (GA). The feature-based design environment module is used for the design, modelling, synthesis, representation and validation of the components for machining application. It uses integrated features, which are predefined as feature templates in the feature library. While instancing these integrated features, they get/derive the information required for the design, modelling, process planning and manufacturing stages of the components as their attributes, from the user/knowledge base. After creating the component, integrated features present in it are validated with respect to its application, namely machining process. The VFE module defines the mathematical model of the factory in the computer, which provides the database for operations, machines, cutting tools, work pieces, etc. The knowledge base maps validated features of the component into operation sets in the first phase of the OBFM stage. Each operation in the operation sets can be carried out using different machines and cutting tools in the factory. All these possible choices are obtained in the second phase of OBFM. GA is used to find the optimal sequence of operations, machines and cutting tools for different criteria. Provisions are also available to generate NC codes for operations, which are to be carried out with NC or CNC machines, if selected. Thus, the optimal process plan for the selected criteria with respect to the given factory environment is found for the modelled component. The feature-based design system developed is built on existing CAD, programming and spread-sheet software tools, namely CATIA~®, MS-Visual Basic~® and MS-Excel~®, which not only save developmental effort, but also make full use of the functionalities of these commercial softwares. This paper explains the developed system with a case study.
机译:解释了可在加工过程的概念到制造阶段中应用的基于特征的设计环境的开发。它大致分为四个模块,即基于特征的设计(FBD)环境,虚拟工厂环境(VFE),基于操作的特征映射(OBFM)和使用遗传算法的优化(GA)。基于特征的设计环境模块用于机械加工应用的组件的设计,建模,综合,表示和验证。它使用集成的功能,这些功能在功能库中预定义为功能模板。在实例化这些集成功能时,它们从用户/知识基础获取/派生组件的设计,建模,过程计划和制造阶段所需的信息作为其属性。创建组件后,将根据其应用程序(即加工过程)验证其中存在的集成特征。 VFE模块在计算机中定义工厂的数学模型,该模型为操作,机器,切削工具,工件等提供数据库。知识库将已验证的组件特征映射到OBFM的第一阶段的操作集中阶段。操作集中的每个操作都可以在工厂中使用不同的机器和切削工具进行。所有这些可能的选择都是在OBFM的第二阶段中获得的。 GA用于为不同标准找到最佳的操作顺序,机器和切削工具。还提供了生成用于操作的NC代码的规定,如果选择的话,这些代码将在NC或CNC机器上执行。因此,针对建模组件找到了针对给定工厂环境的所选标准的最佳工艺计划。开发的基于功能的设计系统建立在现有的CAD,编程和电子表格软件工具CATIA〜®,MS-Visual Basic〜®和MS-Excel〜®的基础上,不仅节省了开发工作量,而且还可以使用这些商业软件的功能。本文通过案例研究来解释开发的系统。

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