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An expert system based material selection approach to manufacturing

机译:基于专家系统的材料选择制造方法

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摘要

Selection of proper materials for a diverse mechanism is one of the hardest tasks in the design and product improvements in various industrial applications. Materials play a vital and important function during the entire design and manufacturing process. The wrong selection of materials often leads to huge prices and ultimately results in product breakdown. Hence, the designers need to identify and select suitable materials with specific functionalities in order to attain the preferred output with the minimum cost concern and specific applicability. This paper tries to solve the materials selection problem by means of an expert system approach to manufacturing. According to this method either four or five different properties are inspected for each automotive part such as impact resistance, lightness, formability, corrosion resistance and low prices for bumpers; strength, formability, vibration absorption and low cost for flywheels; and strength, formability, corrosion resistance, biocompatibility and a small price for implants. Then, these were made more efficient using the expert system approach. Due to performing most of the above mentioned properties, polymeric materials {such as PP (polypropylene), HDPE (high density polyethylene) and PMMA (polymethyl methacrylate)} are selected for the bumpers; GFRPs (glass fiber reinforced plastics) and CFRPs (carbon fiber reinforced plastics) composites for high speed running, and cast iron and steel for low speeds for the flywheels; and finally stainless steel and polymeric materials {such as PVC (polyvinyl chloride) and PE (polyethylene)} were found to be the best materials for automotive parts. The selected materials were almost identical to those obtained by previous authors.
机译:在各种工业应用中,为各种机构选择合适的材料是设计和产品改进中最艰巨的任务之一。在整个设计和制造过程中,材料起着至关重要的作用。材料选择错误通常会导致巨大的价格,并最终导致产品故障。因此,设计人员需要确定和选择具有特定功能的合适材料,以便以最小的成本关注和特定的适用性获得最佳的输出。本文试图通过专家系统的制造方法来解决材料选择问题。按照这种方法,每个汽车零件要检查四种或五种不同的性能,例如耐冲击性,轻便性,可成形性,耐腐蚀性和保险杠的低价。飞轮的强度,可成型性,减振性和低成本;强度,可成型性,耐腐蚀性,生物相容性和植入物的低价格。然后,使用专家系统方法提高了效率。由于具有上述大多数性能,因此选择了保险杠{例如PP(聚丙烯),HDPE(高密度聚乙烯)和PMMA(聚甲基丙烯酸甲酯)}等聚合物材料; GFRPs(玻璃纤维增​​强塑料)和CFRPs(碳纤维增强塑料)复合材料用于高速行驶,而飞轮的铸铁和钢用于低速;最后,发现不锈钢和聚合材料(例如PVC(聚氯乙烯)和PE(聚乙烯))是用于汽车零件的最佳材料。所选材料几乎与以前作者获得的材料相同。

著录项

  • 来源
    《Materials & design》 |2013年第5期|331-340|共10页
  • 作者单位

    Industrial Engineering Department, Faculty of Engineering, Sakarya University, 54187 Sakarya, Turkey;

    Information Systems Engineering Department, Faculty of Computer & Information Sciences, Sakarya University, 54187 Sakarya, Turkey;

    Metallurgy and Materials Engineering Department, Faculty of Technology, Sakarya University, 54187 Sakarya, Turkey,International University of Sarajevo, Faculty of Engineering and Natural Sciences, Department of Mechanical and Industrial Engineering, Hrasnicka Cesta 15, 71000 Sarajevo, Bosnia and Herzegovina;

    Industrial Engineering Department, Faculty of Engineering, Sakarya University, 54187 Sakarya, Turkey;

    Information Systems Engineering Department, Faculty of Computer & Information Sciences, Sakarya University, 54187 Sakarya, Turkey;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Expert system; H. Selection of materials; E. Engineering design; Intelligent decision making; Knowledge-based system;

    机译:专业系统;H.选材;E.工程设计;智能决策;基于知识的系统;

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