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Knowledge-Based System for Casting Process Selection

机译:基于知识的铸造工艺选择系统

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摘要

Design of casting entails the knowledge of various interacting factors that are unique to casting process, and, quite often, product designers do not have the required foundry-specific knowledge. Casting designers normally have to liaise with casting experts in order to ensure the product designed is castable and the optimum casting method is selected. This two-way communication results in long design lead times, and lack of it can easily lead to incorrect casting design. A computer-based system at the discretion of a design engineer can, however, alleviate this problem and enhance the prospect of casting design for manufacture. This paper proposes a knowledge-based expert system approach to assist casting product designers in selecting the most suitable casting process for specified casting design requirements, during the design phase of product manufacture. A prototype expert system has been developed, based on production rules knowledge representation technique. The proposed system consists of a number of autonomous but interconnected levels, each dealing with a specific group of factors, namely, casting alloy, shape and complexity parameters, accuracy requirements and comparative costs, based on production quantity. The user interface has been so designed to allow the user to have a clear view of how casting design parameters affect the selection of various casting processes at each level; if necessary, the appropriate design changes can be made to facilitate the castability of the product being designed, or to suit the design to a preferred casting method.
机译:铸造设计需要掌握铸造过程特有的各种相互作用因素的知识,而且很多时候,产品设计师没有所需的特定于铸造的知识。铸造设计师通常必须与铸造专家联系,以确保设计的产品可铸造,并选择最佳的铸造方法。这种双向通信会导致较长的设计交付时间,而缺乏沟通则很容易导致不正确的铸造设计。但是,由设计工程师决定的基于计算机的系统可以缓解此问题,并提高铸造设计的制造前景。本文提出了一种基于知识的专家系统方法,以帮助铸造产品设计人员在产品制造的设计阶段中,为指定的铸造设计要求选择最合适的铸造工艺。基于生产规则知识表示技术,开发了原型专家系统。拟议的系统由多个自主但相互关联的级别组成,每个级别都处理一组特定的因素,即铸造合金,形状和复杂性参数,精度要求和基于生产数量的比较成本。用户界面经过精心设计,可以使用户清楚地了解铸造设计参数如何影响每个级别的各种铸造工艺的选择。如有必要,可以进行适当的设计更改,以提高被设计产品的可铸造性,或使设计适合于首选铸造方法。

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