Influence of Quenching Agents on Mechanical, Wear, and Fracture Characteristics of Al2O3 / MoS2 Reinforced Al-6061 Hybrid Metal Matrix Composite (MMCs)

IF 1.2 Q4 MATERIALS SCIENCE, MULTIDISCIPLINARY Frattura ed Integrita Strutturale Pub Date : 2022-12-21 DOI:10.3221/igf-esis.63.12
K. R. Suchendra, M. Sreenivasa reddy, M. Ravikumar
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引用次数: 1

Abstract

Aluminium (Al) based composites enhance the mechanical and wear behavior by heat treatment. The quenching factors like cooling agent, cooling rate and temperature of cooling are expected to influence the hardness, tensile, and wear behavior of the Al MMCs. This research shows the outcomes of a sequence of experiments to find the wear and mechanical behavior of the Al6061-Al2O3-MoS2 hybrid composites are quenched with different quenching agents. Hardening of the developed hybrid composites was carried out at 510ºC for the time period of 2 hours. Later, the same composite samples were quenched in ice cubes and water separately. Finally, age-hardening was done at 180ºC temperature for 4 hours and then the samples were cooled under room temperature. Heat treated hybrid composites were subjected to evaluate the hardness, tensile, and wear behavior. The outcomes reveal that the heat treatment significantly enhances the wear and mechanical behavior of hybrid composites. High mechanical strength and improved wear characteristics were observed in the hybrid composites which were quenched using ice cubes. The fractured surface of the tensile test samples and the wornout surface of wear test specimens were studied using a SEM analysis.
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淬火剂对Al2O3/MoS2增强Al-6061复合金属基复合材料力学、磨损和断裂特性的影响
铝基复合材料通过热处理增强了机械性能和磨损性能。冷却剂、冷却速率和冷却温度等淬火因素预计会影响Al-MMCs的硬度、拉伸和磨损行为。本研究显示了一系列实验的结果,以发现用不同的淬火剂淬火Al6061-Al2O3-MoS2杂化复合材料的磨损和力学行为。所开发的混合复合材料在510ºC下硬化2小时。随后,将相同的复合材料样品分别在冰块和水中淬火。最后,在180ºC温度下进行时效硬化4小时,然后将样品在室温下冷却。对热处理的混杂复合材料进行了硬度、拉伸和磨损行为的评估。结果表明,热处理显著提高了混杂复合材料的磨损和力学性能。在使用冰块淬火的混合复合材料中观察到高机械强度和改善的磨损特性。用扫描电镜分析了拉伸试样的断裂面和磨损试样的磨损面。
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来源期刊
Frattura ed Integrita Strutturale
Frattura ed Integrita Strutturale Engineering-Mechanical Engineering
CiteScore
3.40
自引率
0.00%
发文量
114
审稿时长
6 weeks
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