拔罐冲孔一体化作业专家系统研究

H. Hussein, V. Naranje, W. Abdelzaher, Abdelaziz M. A. Ramadan
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引用次数: 0

摘要

组合模具用于在单个工位内生产具有两个或多个操作(其中一个至少是三维操作)的钣金件。模具设计人员面临着许多钣金组合件的应用。这种模具设计是工具室中最复杂的设计之一。组合模下可布置的钣金件种类很多,拔罐冲孔模就是其中之一。本文讨论了拔罐和冲孔模具的成组分类以及组合模具参数化设计的计算机辅助设计。采用基于知识的人工智能系统技术开发CAD系统。该系统能够为钣金件的生产设计拔罐、冲孔组合模具。本系统采用Excel的Visual Basic编程,并与SolidWorks软件进行接口设计。对于每一个拔罐和冲压件形状,都有相应的模具设计形状。该系统对零件形状进行参数化设计,将零件尺寸存储到数据库中,然后进行相应的组合模具设计。该程序提供了一个知识库规则,对具有适当模具设计形状的钣金件进行极限分类。该系统的低成本将有助于中小型钣金工业的模具设计师设计类似类型产品的组合模具。该系统能够减少模具设计人员设计组合模具的时间和工作量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Study of Expert System for Integrated Cupping and Punching Operation
Combination dies are used for production of sheet metal parts having two or more operations (one of them at least in 3 dimensions) in a single station. There are many sheet metal combination parts applications facing the die designer. This kind of die design considers one of the most complicated designs in the tool room. There are many classifications of sheet metal parts can be arranged under the combination die, one of them is the cupping and punching dies. In this paper, a classification of cupping and punching die types into groups and computer aided design for parametric design of combination dies are discussed. The CAD system is developed using knowledge-based system technique of artificial intelligence. The system is capable to design cupping and punching combination dies for production of sheet metal parts. The system is coded in Visual Basic application of Excel and interfaced with SolidWorks software. For each cupping and punching part shape, there is an appropriate die design shape. The system designs the part shape parametrically, storing the part dimension into database, and then design the related appropriate combination die design. The program provided with a knowledge base rule to categorize the limits for the sheet metal parts with the appropriate die design shape. The low cost of the proposed system will help die designers of small and medium scale sheet metal industries for design of combination dies for similar type of products. The proposed system is capable to reduce design time and efforts of die designers for design of combination dies.
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