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首页> 外文期刊>Informatica: An International Journal of Computing and Informatics >A New Hybrid LGPMBWM-PIV Method for Automotive Material Selection
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A New Hybrid LGPMBWM-PIV Method for Automotive Material Selection

机译:一种新的汽车材料选择混合LGPMBWM-PIV方法

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摘要

Efforts are continuously being made by researchers to improve fuel efficiency and to reduce CO2 emissions from the passenger cars. To achieve these goal, recent trend is to make the cars components light in weight for which manufacturing car roofs using natural fiber reinforced composites (NFCs) is one of the method. Several natural fibers (NFs)are available as alternative reinforcements for the fabrication of NFCs. Different NFs possess different properties and therefore, it is necessary to select the most appropriate natural fiber for fabrication of the composites which in turn will lead to the desired performance of the vehicle. Selection of the optimal natural fiber, amongst the several alternatives, is basically a multi criteria decision making (MCDM) problem as selection is based on the evaluation of several conflicting criteria. In this study, twelve alternative natural fibers (Flax, Hemp, Jute, Kenaf, Ramie, Okra, PALF, Coir, Isora, Cotton, Banana and Sisal) and six evaluation criteria (Tensile strength, Stiffness, Failure strain, Density, Degradation temperature and Moisture gain) are considered and selection of the optimal NF is made using a newly developed hybrid MCDM method i.e. Linear goal programming model for Best-Worst method (LGPMBWM) and Proximity index value method (PIV). Results of the study reveal that among all considered natural fibers, Ramie fiber is the most suitable alternative for the fabrication of composites and coir fiber is the worst candidate for the same. Ranking results were also supported by five other MCDM methods as there was a strong correlation between PIV and other MCDM methods.
机译:研究人员不断努力提高燃油效率,并减少乘用车的二氧化碳排放量。为了实现这些目标,最近的趋势是使车辆组件的重量重量,用于使用天然纤维增强复合材料(NFC)的制造汽车屋顶是该方法之一。几种天然纤维(NFS)可作为替代增强件用于制备NFC。不同的NFS具有不同的性质,因此,必须选择用于制造复合材料的最合适的天然纤维,这反过来会导致车辆的所需性能。选择最佳天然光纤,在几个替代方案中,基本上是多标准决策(MCDM)问题,因为选择是基于几个冲突标准的评估。在本研究中,十二个替代天然纤维(亚麻,大麻,黄麻,kEnaf,苎麻,秋葵,帕尔夫,牛,Isora,棉花,香蕉和剑麻)和六种评价标准(抗拉强度,刚度,失效应变,密度,降解温度考虑和湿度增益,并使用新开发的混合MCDM方法选择最佳NF,即用于最佳最佳方法(LGPMBWM)和接近索引值方法(PIV)的线性目标编程模型。研究结果表明,在所有考虑的天然纤维中,苎麻纤维是复合材料制造的最合适的替代方案,并且基准纤维是相同的最糟糕的候选者。另外五种MCDM方法也支持排名结果,因为PIV与其他MCDM方法之间存在强烈相关性。

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