Somayaji Ananthakrishna, Nagaral Madeva, Anjinappa Chandrashekar, Alkahtani Meshel Q, Billady Ravikiran Kamath, Kumar Nithin, Auradi Virupaxi, Islam Saiful, Chowdary J Ranga Raya, Razak Abdul, Khan Mohammad Amir, Naik Channa Keshava
Department of Mechanical Engineering, Nitte (Deemed to be University), NMAM Institute of Technology (NMAMIT), Nitte, Karnataka 574110, India.
Aircraft Research and Design Centre, Hindustan Aeronautics Limited, Bangalore, Karnataka 560037, India.
ACS Omega. 2023 Jul 18;8(30):26828-26836. doi: 10.1021/acsomega.3c01313. eCollection 2023 Aug 1.
In the current study, a two-stage stir cast process was used to produce Al6082 reinforced with sized graphite particulates, and the material's mechanical and tribological properties were analyzed. The graphite content in the Al6082 alloy was increased from 2 to 6% in steps of 2 wt %. The impact of graphite addition to Al6082 was evaluated using microstructural micrographs, hardness test, tensile test, and wear test outcomes. The matrix alloy's microstructure and particle distribution were analyzed using scanning electron microscopy and energy-dispersive spectroscopy. The microstructure of Al6082 shows that the reinforcement particles are evenly distributed throughout the matrix. Although the hardness of metal-matrix composites was slightly reduced when graphite was added at concentrations of up to 6 wt %, the material's tensile strength and wear resistance were significantly improved. Micrographs taken by a microscope were used to examine the fractured surfaces of tensile test specimens. Wear experiments were performed using a conventional pin-on-disc tribometer to examine the tribological properties of both unreinforced matrix and graphite composites. With the addition of 2, 4, and 6 wt % of graphite particles, the composites' wear resistance was significantly improved. Wear of alloys and their composites was analyzed to determine how load and sliding speed impacted wear loss.
在当前研究中,采用两阶段搅拌铸造工艺制备了添加有尺寸分级石墨颗粒增强的Al6082,并对该材料的力学性能和摩擦学性能进行了分析。Al6082合金中的石墨含量以2 wt%的步长从2%增加到6%。利用微观结构显微照片、硬度测试、拉伸测试和磨损测试结果评估了向Al6082中添加石墨的影响。使用扫描电子显微镜和能谱分析对基体合金的微观结构和颗粒分布进行了分析。Al6082的微观结构表明增强颗粒均匀分布在整个基体中。尽管当石墨添加量高达6 wt%时金属基复合材料的硬度略有降低,但材料的拉伸强度和耐磨性显著提高。使用显微镜拍摄的显微照片来检查拉伸测试试样的断裂表面。使用传统的销盘摩擦磨损试验机进行磨损实验,以研究未增强基体和石墨复合材料的摩擦学性能。随着添加2 wt%、4 wt%和6 wt%的石墨颗粒,复合材料的耐磨性显著提高。分析了合金及其复合材料的磨损情况,以确定载荷和滑动速度如何影响磨损损失。