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洪 军  Hong, Jun 教授、博士生导师 教育部****奖励计划特聘教授 国家重点研发计划项目首席科学家   西安交通大学 党委常委、副校长 兼任机械工程学院院长   现代设计及转子轴承系统教育部重点实验室 主任 联系方式: Email: jhong@xjtu.edu.cn   地点一:陕西省西安市雁塔区雁翔路99号 西安交通大学高端装备制造协同创新中心(曲江校区南一楼)A座   地点二:陕西省西安市长安区河堤路 中国西部科技创新港力行楼(2号巨构)415...
洪军
教授
Papers
Decision support system for rapid prototuping process selection through intergration of fuzzy synthetic evalution and an expert system
Release Time:2025-04-30 Hits:
Date:
2025-04-30
Title of Paper:
Decision support system for rapid prototuping process selection through intergration of fuzzy synthetic evalution and an expert system
Journal:
International Journal of Production Research
Summary:
A new method is proposed for selecting the most appropriate rapid prototyping process according to user's specific requirements bu using the expert system and fuzzy synthentic evaluation. The selection process is divided into two stages. First, it is necessary to generate feasible alternatives, which are executed under the expert system environment. Second, given those feasible alternatives, the fuzzy synthetic evaluation approch is employed to produce a ranking order of the alternatives and to finalize
the most suitable rapid prototyping system. One distinctive characteristic of this method is that
quantitative as well as qualitative measures are employed, proving more accurate result. The decision system developed based on the proposed method is composed of four modules: a database to store the specifications of various rapid prototyping process; a knowledge-based expert system for determining the feasible alternatives;
a fuzzy synthetic evaluation model to select the most suitable rapid prototyping process; and a user interface and an expert interface to interact with the system. The fuzzy synthetic evaluation approach used in the system is illustrated in detail by a numerical example. Furthermaore, a Java-enabled solution, together with web techniques, is employed for developing such a network decision support system. Finally, two examples of rapid prototyping process selection are designed to demonstrate the application of the system. The system has been implemented and can run at a rapid prototyping and manufacturing networked service platform that the authors have developed.
Co-author:
Lan,H;Ding,Y;Hong,J
Volume:
43(1)
Page Number:
169-194
Translation or Not:
No
Date of Publication:
2005-10-20

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