Natural fibre composite selection for two-stroke marine engine under-piston door using hybrid AHP and TOPSIS methods

Q1 Engineering
Ru Vern Yiow, Muhd Ridzuan Mansor, Mohd Adrinata Shaharuzaman
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Abstract

This article presents the selection process of natural fibre composites (NFC) material for the application of a two-stroke marine engine under-piston door (UPD) utilising a combination of the Analytical Hierarchy Process (AHP) with the Technique for Order of Preference by Similarity to Ideal Solution (TOPSIS). NFC consists primarily of a biopolymer enforced with natural fibres. The selection of the best biopolymer and natural fibre was based upon key parameters, which represented the selection criteria. Natural fibre was selected based on four criteria; density, Tensile Strength (TS), Young's modulus (YM) and price. Biopolymer was selected based on an additional two criteria; flammability and melting point. A pairwise comparison was made for each criterion, establishing a matrix for the determination of the weightage using the AHP. This weightage was then applied into the TOPSIS method for the final ranking of natural fibre and biopolymer candidates. With a score of 0.870 in relative closeness to ideal solution, flax was determined to be the best natural fibre. Poly (lactic acid) obtained a score of 0.801 as the best biopolymer. Through this article, a synergy between AHP and TOPSIS methods were demonstrated in the selection and ranking of natural fibre and biopolymer as constituents of NFC for the potential application as alternative material for marine machinery application.
基于AHP和TOPSIS的二冲程船用发动机活塞下门天然纤维复合材料选择
本文介绍了利用层次分析法(AHP)和理想解决方案相似性偏好排序技术(TOPSIS)相结合的方法,为二冲程船用发动机活塞下门(UPD)选择天然纤维复合材料(NFC)材料的过程。NFC主要由天然纤维强化的生物聚合物组成。最佳生物聚合物和天然纤维的选择是基于关键参数,这些参数代表了选择标准。天然纤维的选择基于四个标准;密度,抗拉强度(TS),杨氏模量(YM)和价格。生物聚合物是根据另外两个标准选择的;易燃性和熔点。对每个标准进行两两比较,利用层次分析法建立确定权重的矩阵。然后将该权重应用于TOPSIS方法,以对天然纤维和生物聚合物候选物进行最终排名。与理想溶液相对接近的分数为0.870,亚麻是最佳的天然纤维。聚乳酸得分为0.801,是最佳的生物聚合物。通过本文,AHP和TOPSIS方法之间的协同作用证明了天然纤维和生物聚合物作为NFC成分的选择和排序,作为船舶机械应用的替代材料的潜在应用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
International Journal of Lightweight Materials and Manufacture
International Journal of Lightweight Materials and Manufacture Engineering-Industrial and Manufacturing Engineering
CiteScore
9.90
自引率
0.00%
发文量
52
审稿时长
48 days
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