Characteristics of Natural Fiber Composites Materials Reinforced with Aluminum and Copper Powder for The Performance of Automatic Motorcycle Clutch Pad

Q2 Engineering Automotive Experiences Pub Date : 2023-08-27 DOI:10.31603/ae.8878
Riyadi Riyadi, Ahmad Kholil, Januar Parlaungan Siregar, Siska Titik Dwiyati, Danang Budi Pratama, Ari Setiawan, Eko Arif Syaefudin
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Abstract

Currently, research on natural fiber composites (NFC) for automotive applications has attracted the attention of researchers and academics. Natural fibers such as coconut fiber and wood powder are mixed with metal materials such as aluminum and copper to obtain the composite characteristics of automatic motorcycle clutch pad materials. Coconut fiber and wood powder are suitable natural materials for composites and are easily obtained from waste. Natural fiber materials with metal reinforcement into composites are expected to produce materials suitable for friction materials such as clutch pads and brake pads with a good characteristic. This study aims to determine the characteristics of the coefficient of friction, wear, and hardness of NFC materials reinforced aluminum and copper powder for the performance of automatic motorcycle clutch pads. Experiments were carried out on various compositions of aluminum and copper powder. Tribometer testing was carried out to determine the friction coefficient and wear. Hardness testing using the Vickers method and testing the performance of automatic motorbikes with a chassis dyno test. The results show that the performances of the clutch pad with NFC-reinforced aluminum and copper show power and torque results that resemble the performances of genuine part materials in each operating cycle. The value of friction coefficient, wear, and hardness of this material are a value close to that of a genuine part clutch pad material. The improved performance of this material is expected to be considered in the manufacture of future clutch pads.
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铝铜粉增强天然纤维复合材料对摩托车自动离合器片性能的影响
目前,用于汽车的天然纤维复合材料(NFC)的研究已经引起了研究人员和学术界的关注。将椰子纤维、木粉等天然纤维与铝、铜等金属材料混合,得到具有自动摩托车离合器垫材料复合特性的材料。椰子纤维和木粉是适合于复合材料的天然材料,并且很容易从废物中获得。天然纤维材料与金属增强成复合材料有望生产出适合于摩擦材料的材料,如离合器片、刹车片等,具有良好的性能。本研究旨在确定NFC材料增强铝和铜粉对摩托车自动离合器片性能的摩擦系数、磨损系数和硬度特征。对不同成分的铝、铜粉进行了实验研究。进行了摩擦计测试,以确定摩擦系数和磨损。用维氏法进行硬度测试,用底盘动态测试测试自动摩托车的性能。结果表明,nfc增强铝和铜离合器片在各工况下的功率和扭矩结果与正品零件材料的性能基本一致。该材料的摩擦系数、磨损和硬度值接近于正品离合器垫材料的值。这种材料性能的改进有望在未来离合器片的制造中得到考虑。
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
Automotive Experiences
Automotive Experiences Engineering-Automotive Engineering
CiteScore
3.00
自引率
0.00%
发文量
14
审稿时长
12 weeks
期刊最新文献
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