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A Hybrid Material Design and Evaluation System for Steelmaking

机译:炼钢混合材料设计与评估系统

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Development of material design system for steelmaking is a complex task, due to the interrelationship of many factors in steelmaking process. In addition to this, design specifications vary frequently and material design knowledge is held in largely intuitive undefined format. This paper discusses material design system which deals with the determination of the steelmaking aim chemistry utilising hybrid approach of knowledge bases along with mathematical modelling to deal with this complex task. Knowledge Elicitation (KEL) is the most important stage, but often the principal bottleneck, in the development of knowledge-based systems. A new methodology has been developed to efficiently elicit material design knowledge utilising a three character alphanumeric codification scheme, paper models and non-interview techniques. The paper then presents the application of fuzzy logic to the material design system to rank the alternative steelmaking aim chemistries according to the degree which will satisfy the customer's requirements of chemistry and mechanical properties, with due consideration given to the economic aspects and the complexity involved in the production. Finally, the paper describes the development of a codification scheme aided graphical user interface to enable quick and error free input of basic information about the steel plate required and customer special requirements. In addition to making the system more user friendly and visually appealing, the interface also adds flexibility and sophistication to the prototype knowledge-based system for designing steel plates.
机译:由于炼钢过程中许多因素的相互关系,开发炼钢材料设计系统是一项复杂的任务。除此之外,设计规范经常变化,并且材料设计知识以很大程度上直观的未定义格式保存。本文讨论了材料设计系统,该系统利用知识库的混合方法以及数学建模来解决该复杂任务,从而确定炼钢目标化学。知识激发(KEL)是基于知识的系统开发中最重要的阶段,但通常是主要的瓶颈。已经开发出一种新的方法,以利用三字符字母数字编码方案,纸张模型和非采访技术来有效地获取材料设计知识。然后,本文提出了模糊逻辑在材料设计系统中的应用,以根据满足客户化学和机械性能要求的程度对替代炼钢目标化学进行排序,同时适当考虑了经济方面和涉及的复杂性生产。最后,本文描述了一种编码方案辅助图形用户界面的开发,该界面可快速无误地输入有关所需钢板和客户特殊要求的基本信息。除了使系统更加用户友好和视觉吸引力外,该界面还为基于原型知识的钢板设计系统增加了灵活性和复杂性。

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