Shyamlal Chandrasekaran, Shanmugavel Rajesh, Jappes J T Winowlin, Nair Anish, Ravichandran M, Abuthakeer S Syath, Prakash Chander, Dixit Saurav, Vatin N I
Department of Mechanical Engineering, Kalasalingam Academy of Research and Education, Krishnankoil 626126, India.
Department of Mechanical Engineering, K Ramakrishnan College of Engineering, Tiruchirappalli 621112, India.
Materials (Basel). 2022 Jul 26;15(15):5165. doi: 10.3390/ma15155165.
Aerospace alloys with reduced wall thickness but possessing higher hardness, good tensile strength and reasonable corrosion resistance are essential in manufacturing of structures such as fuselage. In this work, friction stir welding has been carried out on such an aerospace aluminum alloy AA8090 T87 which contains 2.3% lithium. Tool rotational speed of 900 rpm and traverse speeds of 90 mm/min., 110 mm/min. are the welding parameters. Hardness analysis, surface roughness analysis and corrosion analysis are conducted to analyze the suitability of the joint for the intended application. The samples were corrosion tested in acid alkali solution and they resulted in the formation of pits of varying levels which indicate the extent of surface degradation. Hardness of the samples was measured after corrosion analysis to observe the changes. The analysis suggests that the change in tool traverse speed transformed the corrosion behavior of the joint and affected both the hardness and surface roughness which mitigated the quality of the joint.
壁厚减小但硬度更高、具有良好的抗拉强度和合理耐腐蚀性的航空航天合金,对于制造诸如机身等结构至关重要。在这项工作中,对含有2.3%锂的AA8090 T87航空航天铝合金进行了搅拌摩擦焊。焊接参数为刀具转速900转/分钟和横向速度90毫米/分钟、110毫米/分钟。进行硬度分析、表面粗糙度分析和腐蚀分析,以分析接头对于预期应用的适用性。样品在酸碱溶液中进行腐蚀测试,结果形成了不同程度的凹坑,这表明了表面降解的程度。在腐蚀分析后测量样品的硬度,以观察变化情况。分析表明,刀具横向速度的变化改变了接头的腐蚀行为,并影响了硬度和表面粗糙度,从而降低了接头质量。