Investigation of wear characteristics of granite dust & coconut shell ash reinforced aluminum metal matrix composite using design of experiment

IF 1.5 Q2 ENGINEERING, MULTIDISCIPLINARY
Yogesh K Mogal, Santosh B Rane, Subhash K Mahajan, Rajendra S Chaudhari
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Abstract

Recently, one of the most important issue faced by all nations is a waste management. Therefore, it is essential to search for creative solutions to waste reduction, reuse, and recycling. This can be accomplished by adding waste materials to composite materials as a reinforcements. Reusing waste materials enhances the characteristics of existing materials, while also helping the environment by solving the disposal problem. The main aim of this paper is to study the wear characteristics of hybrid aluminum metal matrix composite reinforced with coconut shell ash (CSA) and granite dust. The hybrid composite samples were manufactured using stir casting by reinforcing CSA (ranging from 0 wt% to 12 wt%) and granite dust (maintained at 2 wt%) in Al6061 alloy. SEM and EDAX analysis were performed to investigate the microstructure and elemental composition. The wear characteristics of the hybrid composites were determined via pin-on-disc tests. Finally, the Taguchi design of experiment was performed on the specimen having the best wear characteristics by selecting the L27 orthogonal array and identified the influence of process variables on the wear rate. The results of the pin-on-disc experiment showed that the wear rate decreased with increasing CSA%. The hybrid composite composed of 02 wt% granite dust, & 12 wt% CSA indicates a lower wear rate (56.25%) as compared to the matrix alloy. The Taguchi analysis prooved that the sliding distance has a greater impact on the wear rate than the other parameters. This material can be a superior substitute where high wear resistance is required.
利用实验设计研究花岗岩粉和椰壳灰强化铝金属基复合材料的磨损特性
最近,所有国家面临的最重要问题之一就是废物管理。因此,必须寻找创造性的解决方案来减少、再利用和回收废物。这可以通过在复合材料中添加废料作为增强材料来实现。废弃材料的再利用既能增强现有材料的特性,又能解决废弃物的处理问题,有利于保护环境。本文的主要目的是研究用椰壳灰和花岗岩灰增强的混合铝金属基复合材料的磨损特性。通过在 Al6061 合金中添加 CSA(从 0 wt% 到 12 wt%)和花岗岩粉尘(保持在 2 wt%),采用搅拌铸造法制造了混合复合材料样品。为研究微观结构和元素组成,进行了 SEM 和 EDAX 分析。通过针盘试验确定了混合复合材料的磨损特性。最后,通过选择 L27 正交阵列,对具有最佳磨损特性的试样进行了田口试验设计,并确定了工艺变量对磨损率的影响。针盘实验结果表明,磨损率随着 CSA% 的增加而降低。与基体合金相比,由 02 wt%的花岗岩粉尘和 12 wt%的 CSA 组成的混合复合材料的磨损率(56.25%)更低。田口分析表明,与其他参数相比,滑动距离对磨损率的影响更大。在需要高耐磨性的地方,这种材料可以作为一种优质替代品。
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
Engineering Research Express
Engineering Research Express Engineering-Engineering (all)
CiteScore
2.20
自引率
5.90%
发文量
192
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