Volume 40 Issue 10
Oct.  2014
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He Long, Mei Zhongyi. Application of the improved fuzzy comprehensive evaluation method in forming processing decision-making for the composite component[J]. Journal of Beijing University of Aeronautics and Astronautics, 2014, 40(10): 1469-1476. doi: 10.13700/j.bh.1001-5965.2013.0663(in Chinese)
Citation: He Long, Mei Zhongyi. Application of the improved fuzzy comprehensive evaluation method in forming processing decision-making for the composite component[J]. Journal of Beijing University of Aeronautics and Astronautics, 2014, 40(10): 1469-1476. doi: 10.13700/j.bh.1001-5965.2013.0663(in Chinese)

Application of the improved fuzzy comprehensive evaluation method in forming processing decision-making for the composite component

doi: 10.13700/j.bh.1001-5965.2013.0663
  • Received Date: 18 Nov 2013
  • Publish Date: 20 Oct 2014
  • The original fuzzy comprehensive evaluation method can be improved and converted to the computer-operable decision-making algorithm which can solve the problem of making the forming processing decision for the aircraft composite component, and the evaluation result is more consistent with actual production. The membership degree calculation method was introduced to determine the evaluation matrix and it achieved the computer instead of manpower to complete determining the evaluation matrix. The increasing safety margin method for the scope of the evaluation was adopted to avoid the problem that dividing the evaluation scope boundaries is too absolute by the original fuzzy comprehensive evaluation method. The dynamic weight distribution method was combined with the ratio method to achieve the computer automatic weight distribution, and it ensured the effective allocation results to meet the user's actual preferences. By using the improved fuzzy comprehensive evaluation method as the core algorithm, the computer aided forming processing design system for the composite component was developed. The developed system was applied in the actual forming processing decision-making, and the decision result was conformed to the actual production. It indicates the feasibility and accuracy of the method in the application of the computer-aided forming processing decision-making.

     

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  • [1]
    Kim J S. Development of a user-friendly expert system for composite laminate design[J].Composite Structures,2007,79(1):76-83
    [2]
    富威,王鹏, 李庆芬.基于Web的复合材料设计专家系统[J].哈尔滨工程大学学报,2004,25(6):773-776 Fu Wei,Wang Peng,Li Qingfen.Study on expert system in composite material design based on the Web[J].Journal of Harbin Engineering University,2004,25(6):773-776(in Chinese)
    [3]
    Narayana N G, Omker S N,Mudigere D,et al.Nature inspired optimization techniques for the design optimization of laminated composite structures using failure criteria[J].Expert System with Applications,2011,38(3): 24892499
    [4]
    Setiawan R, Yulianto E.Design of composite brakes using knowledge-based design methodology[J].Advanced Materials Research,2012,566(1):324-330
    [5]
    Milani A S, Eskicioglu C,Robles K,et al.Multiple criteria decision making with life cycle assessment for material selection of composites[J].Express Polymer Letters,2011,5(12): 10621074
    [6]
    Kim J S, Kim C G,Hong C S,et al.Development of concurrent engineering system for design of composite structures[J].Composite Structures,2000,50(3):297-309
    [7]
    Poudel A, Chu T P.Intelligent nondestructive testing expert system for aircraft Carbon/Carbon composite brakes using infrared thermography and air-coupled ultrasound[J].Materials Evaluation,2012,70(10):1219-1229
    [8]
    Choi J W, Kelly D,Raju J,et al.Knowledge-based engineering system to estimate manfacturing cost for composite structures[J].Journal of Aircraft,2005,42(6):1396-1402
    [9]
    梅立,梅中义, 范玉青.复合材料构件计算机辅助成型工艺设计的研究[J].机械工程师,2009(1):118-121 Mei Li,Mei Zhongyi,Fan Yuqing.Research on computer aided forming process design of composed material structure[J].Mechanical Engineer,2009(1):118-121(in Chinese)
    [10]
    王共冬,刘文剑. 复合材料成型工艺方法的模糊综合评判[J].材料科学与工艺,2008,16(1):66-69 Wang Gongdong,Liu Wenjian.Fuzzy comprehensive evaluation of composite processing on CAPP[J].Materials Science and Technology,2008,16(1):66-69(in Chinese)
    [11]
    潘正华. 模糊推理算法原理[J].计算机研究与发展,2008,45(S1):165-168 Pan Zhenghua.Mathematical principle of the algorithms of fuzzy reasoning[J].Journal of Computer Research and Development,2008,45(S1):165-168(in Chinese)
    [12]
    张英俊,马培军, 苏小红,等.属性权重不确定条件下的区间直觉模糊多属性决策[J].自动化学报,2012,38(2): 220228 Zhang Yingjun,Ma Peijun,Su Xiaohong,et al.Multi-attribute decision making with uncertain attribute weight information in the framework of interval-valued intuitionistic fuzzy set[J]. Acta Automatica Sinica,2012,38(2):220-228(in Chinese)
    [13]
    伍晓榕,张树有, 裘乐淼,等.面向绿色制造的加工工艺参数决策方法及应用[J].机械工程学报,2013,49(7): 91100 Wu Xiaorong,Zhang Shuyou,Qiu Lemiao,et al.Decision making method of process parameter selection for green manufacturing based on a DEMATEL-VIKOR algorithm[J].Journal of Mechanical Engineering,2013,49(7):91-100(in Chinese)
    [14]
    荆洪英,张利, 闻邦椿.基于层次分析法的产品设计质量权重分配[J].东北大学学报:自然科学版,2009,30(5): 712715 Jing Hongying,Zhang Li,Wen Bangchun.AHP-based assignment of weight in product design quality[J].Journal of Northeastern University:Natural Science,2009,30(5):712-715(in Chinese)
    [15]
    杨威,史加荣, 庞永锋.模糊环境下部分权重信息的多属性群决策方法[J].模糊系统与数学,2013,27(1):118-123 Yang Wei,Shi Jiarong,Pang Yongfeng.Fuzzy multi-attribute group decision making with partial weight information[J].Fuzzy Systems and Mathematics,2013,27(1):118-123(in Chinese)

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