ALLOCATION OF HYBRID COMPOSITE MATERIALS IN FRICTION DISC CLUTCHES

Khuder N. Abed, Iman M. Naemah, Saad T. Faris
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Abstract

This study explains the design of a single-plate clutch using experimental measurements. The ratios of materials used to make the samples were 34g of Kevlar fiber (aramid 49 type), 150g of epoxy-type Sikadur-52, 10g of iron powder, and 10g of graphite powder. The three different sample types were made as laminates and cut using water cutter machinery according to the ASTM standard for each test. The following procedures were taken: The prepared mold was created first. Epoxy and the hardener were mixed in a 2:1 ratio. After that, the mixture was stirred well for a sufficient period of time. Then a quantity of the epoxy mixture was placed in the mold, and Kevlar fibers were placed in layers. The following ratios were used to create three samples: Sample 1 (34 g of Kevlar fiber, 150 g of epoxy), Sample 2 (34 g of Kevlar fiber, 150 g of epoxy, 10 g Fe), and Sample 3: Kevlar fiber (34 g), graphite (10 g), epoxy (150 g), and iron (10 g). The following facts have been found: When Kevlar fiber (aramid 49 type) was used at a weight of 34g for all samples, the best performance was achieved by hybrid composite sample3, which has the highest values (modulus of elasticity and higher wear resistance) in comparison to the other two composite samples (sample2 and sample1). In comparison to composite sample 1, the hybrid composite samples 2, and 3 have the highest value. (Tests for hardness).
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摩擦片式离合器中混合复合材料的配置
本研究利用实验测量解释了单片离合器的设计。制作样品的材料配比为:凯夫拉纤维(芳纶49型)34g,环氧型Sikadur-52 150g,铁粉10g,石墨粉10g。将三种不同类型的样品制成层压板,并根据每种测试的ASTM标准使用水切割机械切割。采取以下步骤:首先创建准备好的模具。环氧树脂和硬化剂以2:1的比例混合。之后,将混合物充分搅拌一段足够的时间。然后将一定量的环氧树脂混合物放入模具中,并分层放置凯夫拉纤维。使用以下比例创建三个样品:样品1(34克凯夫拉纤维,150克环氧树脂),样品2(34克凯夫拉纤维,150克环氧树脂,10克铁),样品3:凯夫拉纤维(34克),石墨(10克),环氧树脂(150克)和铁(10克)。发现以下事实:当所有样品均使用重量为34g的凯夫拉纤维(芳纶49型)时,混杂复合材料样品sample3的性能最佳,其弹性模量和耐磨性均高于其他两种复合材料样品(sample2和sample1)。与复合样品1相比,混合复合样品2和3的值最高。(硬度测试)。
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来源期刊
CiteScore
0.70
自引率
0.00%
发文量
74
审稿时长
50 weeks
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