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首页> 外文期刊>Indian journal of engineering and materials sciences >Application of hybrid AHP-TOPSIS technique in analyzing the braking performance sensitivity of organic-ceramic fibrous reinforced friction composites
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Application of hybrid AHP-TOPSIS technique in analyzing the braking performance sensitivity of organic-ceramic fibrous reinforced friction composites

机译:混合AHP-TOPSIS技术在分析有机陶瓷纤维增强摩擦复合材料的制动性能敏感方面的应用

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摘要

In this research work, brake pad friction composite materials based on binary and ternary combinations of ceramic-organic fibres have been realized, following evaluation of braking performance parameters on Krauss friction testing machine adopting ECE R-90 regulations and PVW-32 standard test protocol. The obtained experimental performance data has been further used for the assessment of performance based ranking using hybrid AHP-TOPSIS technique. The order of relative weights or priority order of performance defining criteria as obtained by AHP is μ-Performance (μsubp/sub) ~ Stability Coefficient (α) % μ-Recovery Wear (g) % μ-Fade DTR (°C) Friction Fluctuations (?μ) Variability Coefficient (γ). The consistency verification highlights that λsubmax /sub= 8.0391, consistency index = 0.0045579, and consistency ratio (CR) = 0.00323 0.1 (upper bound limit for acceptance of CR). The aramid fibre 5-7.5 wt.% in combination with other fibres 25-22.5 wt.% (for binary combination) and 12.5/12.5 - 11.25/11.25 wt.% (for ternary combinations) has been found to impart the best overall performance level relative to other combos of the friction composites under investigation. The sensitivity analysis of performance defining criteria's and ranking orders of the compositions in the respective formulations gives robust/stable observations as the weights changes from ± (10-20)%. The hybrid AHP-TOPSIS technique in-conjunction-with sensitivity analysis might sever as an effective tool in the decision making whenever there are finite material alternatives and finite performance determining criteria having conflicting nature.
机译:在该研究工作中,在采用ECE R-90法规和PVW-32标准测试方案的Krauss摩擦试验机和PVW-32标准试验方案的制动性能参数评估后,基于二元和三元组合的制动垫摩擦复合材料已经实现了基于二元和陶瓷 - 有机纤维组合。所获得的实验性能数据进一步用于使用混合AHP-TOPSIS技术评估基于性能的排名。由AHP获得的性能定义标准的相对权重或优先顺序的顺序是μ性能(μ<亚> P )〜稳定性系数(α)>%μ恢复>磨损(g)>%μ -FADE> DTR(°C)>摩擦波动(ωμ)>可变性系数(γ)。一致性验证突出显示λ max = 8.0391,一致性索引= 0.0045579和一致性比(Cr)= 0.00323 0.1(接受Cr的上限限制)。芳族纤维5-7.5重量%。%与其他纤维组合25-22.5重量%(用于二元组合)和12.5 / 12.5-11.25 / 11.25重量%(用于三元组合)促进了最佳整体性能在调查中相对于摩擦复合材料的其他组合的电平。在各种制剂中的性能定义标准和排序顺序的性能敏感性分析给予鲁棒/稳定的观察,因为重量从±(10-20)%变化。混合AHP-TOPSIS技术与敏感性分析可能会在决策中作为有限的材料替代品和有限性能确定具有相互冲突的标准时,可以作为决策中的有效工具。

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