Experimental Investigation on Thermal Properties of Al2024 Alloy by Friction Stir Welding

L. Dumpala, Shaik Ghouse Mohiddin, P. V. Krishna, U. Rajyalakshmi
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Abstract

Friction stir welding (FSW) connects the parts without melting the metal and produces a plasticized zone of metal. The main objective of this paper is to examine the temperature distribution that results from friction stir-lap welding of Al2024 alloy at varying rotating speeds and feed rates. Temperature distribution, heat flow, directional heat flux, thermal stresses, and strain energy are analyzed at different speeds of 700, 1000rpm, and at feed rate of 20 mm/min and 40 mm/min. Comparing the experimental temperatures with the simulated temperatures an error of 0.6% has been observed which is negligible. By comparing the numerical values of heat flux to the simulated values, the maximum error found to be 5.8% for the similar lap Al 2024-T3 joint. Temperature and heat flux values are gradually decreased from nugget zone to thermo-mechanical zone. But when compared to the nugget zone with the thermo-mechanical zone, the values of thermal stress and strain energy were abnormally altered.
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摩擦搅拌焊接 Al2024 合金热性能实验研究
搅拌摩擦焊(FSW)在不熔化金属的情况下连接部件,并产生金属塑化区。本文的主要目的是研究 Al2024 合金在不同转速和进给率下进行搅拌摩擦搭接焊接时的温度分布。在 700rpm 和 1000rpm 的不同转速下,以及在 20 mm/min 和 40 mm/min 的进料速率下,对温度分布、热流、定向热通量、热应力和应变能进行了分析。实验温度与模拟温度的误差为 0.6%,可以忽略不计。通过比较热通量数值与模拟值,发现类似搭接的 Al 2024-T3 接头的最大误差为 5.8%。温度和热通量值从金块区到热机械区逐渐降低。但与金块区和热机械区相比,热应力和应变能的值发生了异常变化。
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