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首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Performance of friction materials based on variation in nature of organic fibres Part II. Optimisation by balancing and ranking using multiple criteria decision model (MCDM)
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Performance of friction materials based on variation in nature of organic fibres Part II. Optimisation by balancing and ranking using multiple criteria decision model (MCDM)

机译:基于有机纤维性质变化的摩擦材料的性能第二部分。通过使用多准则决策模型(MCDM)进行平衡和排名来进行优化

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摘要

Multiple criteria decision model (MCDM) is used for optimisation of several conflicting criteria dependent systems. A multiple criteria decision model (MCDM) approach taking into account the performance defining attributes (PDAs) such as μ-fade, μ-recovery, performance-μ, wear and temperature rise in the rotor disc, was adopted to determine the performance ranking of five non-asbestos fibre reinforced organic friction materials. It is a three-stepped procedure to derive an overall complete final order of the options. The out-ranking matrix is derived, indicating the frequency of the relative superiority of options with respect to each other based on each criterion. The out-ranking matrix is triangularised to obtain an implicit ordering or provisional order of options, based on sequential application of a balancing principle supported by the pair wise comparison of the options with the help of advantages-disadvantages table. The method has been used to rank a series of friction materials (FMs) based on the combinatorial variation of the fibres, in particular, the organic fibres. The carbon fibre based composite (C) was found to be functioning optimally for its practical selection and implementation in similar evaluating conditions. Cellulose fibre based composite (S) was found to be the poorest in this regard.
机译:多准则决策模型(MCDM)用于优化几个冲突的准则相关系统。采用考虑到性能定义属性(PDA)的多准则决策模型(MCDM)方法,例如转子盘中的μ衰减,μ恢复,μ性能,磨损和温度升高,来确定转子的性能等级。五种非石棉纤维增强有机摩擦材料。这是一个包含三个步骤的过程,可以得出期权的总体完整最终顺序。得出排名靠前的矩阵,该矩阵基于每个标准指示选项相对于彼此的相对优势的频率。基于优先原则的顺次应用,在优先原则的基础上,对排名顺序矩阵进行三角化处理,以获得期权的隐式排序或临时排序,该平衡原理由期权的成对比较支持。该方法已用于根据纤维(尤其是有机纤维)的组合变化对一系列摩擦材料(FM)进行排名。发现碳纤维基复合材料(C)在类似的评估条件下对其实际选择和实施具有最佳的功能。在这方面,发现纤维素纤维基复合材料(S)最差。

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