Sliding Wear Response of Human Beard Reinforced Epoxy Based Composites Filled with Ferrochrome Slag

YMER Digital Pub Date : 2022-07-31 DOI:10.37896/ymer21.07/b5
M. Behera, S. K. Mishra
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Abstract

The prospect of employing ferrochrome slag (an industrial waste) along with human hair (a natural fiber) in epoxy as a novel material for extended life exists. In this study an effort has been made to research the possible uses of human hair, which can be easily and cheaply discovered, for creating goods with additional value. Some industrial wastes ( ferro chrome slag), have been investigated for use as filler components in these composites. The goal of the current research is to understand how human hair reinforced epoxy composites with particulate fillers are developed, characterized, and worn over time. The mechanical properties of the composites are evaluated under normal test conditions. Testing for sliding wear is done using Taguchi's L9 orthogonal array design in order to estimate the influence of different process parameter on wear response of the fabricated composites. In accordance with Taguchi's experimental design, the fiber content and sliding velocity are the two factors that have the most significance on wear response of the developed PMCs. It was observed that the wear rate increases with an increase in sliding velocity, whereas it reduces with an increase in fiber content. This experiment reveals that presence of human beard along with ferro slag particles increase the wear resistance of normal epoxy. Keywords: Human Beard, Ferro-Chrome slag, PMCs, Mechanical Properties, Sliding Wear
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铬铁渣填充人须增强环氧基复合材料的滑动磨损响应
利用工业废渣铬铁渣与人的头发(一种天然纤维)制备环氧树脂作为一种新型的延长寿命材料,具有广阔的应用前景。在这项研究中,已经努力研究了人类头发的可能用途,它可以很容易和廉价地发现,以创造具有附加价值的商品。研究了一些工业废渣(铬铁渣)作为复合材料的填料。当前研究的目标是了解带有颗粒填料的人发增强环氧复合材料是如何随着时间的推移而发展、表征和磨损的。在常规试验条件下对复合材料的力学性能进行了评价。采用田口L9正交设计进行滑动磨损试验,以评估不同工艺参数对复合材料磨损响应的影响。根据Taguchi的实验设计,纤维含量和滑动速度是对所开发的pmc磨损响应影响最大的两个因素。磨损率随滑动速度的增加而增加,随纤维含量的增加而降低。实验结果表明,人须和铁渣颗粒的存在使普通环氧树脂的耐磨性提高。关键词:人须,铬铁渣,pmc,力学性能,滑动磨损
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