Numerical Simulation of Heat Transfer Behavior of Dissimilar AA5052-AA6061 Plates in Fiction Stir Welding: An Experimental Validation

Q3 Engineering
M. Vishwanath, N. Lakshamanaswamy, G. K. Ramesh
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引用次数: 5

Abstract

Abstract Fiction Stir welding (FSW) a unique type of metal joining process in solid state, where the heat generation takes place due to the friction action between the rotating tool and the work piece. It is generally used to join all series of Aluminum alloys with good strength and other metallic alloys finds difficult to weld through regular fusion welding techniques. The metal joining takes place in the solid state as the metal to be welded reaches about 80% to 90% of its melting temperature. The joining of metals in friction stir welding does not require any filler metals all classes of Aluminium alloys can be joined and in some desirable cases dissimilar metal compositions and Aluminiun metals composites can be joined satisfactorily. Joining of dissimilar metals has become a trend in the industries like aerospace, automotive chemical etc. as the helps in reducing the cost incurred by eliminating the costly materials. In the present study an experimental investigations are made to study the heat transfer behavior by determining the temperature distribution in AA5052-AA6061 plates during the Friction Stir welding. A three dimensional transient analysis is made by using ANSYS finite element analysis software. Thermocouples are placed at the suitable locations and the same point the temperature readings were taken from the simulation results. The experimental data is compared with the numerically simulated results. The numerical simulations results obtained are in better agreement with the experimental data obtained.
AA5052-AA6061异种板搅拌焊换热行为的数值模拟:实验验证
摘要搅拌焊接(FSW)是一种独特的固态金属连接工艺,其热的产生是由于旋转的工具和工件之间的摩擦作用。它一般用于连接所有系列强度好的铝合金和其他难以通过常规熔焊技术焊接的金属合金。当待焊金属达到其熔化温度的80%至90%时,金属连接发生在固态状态。搅拌摩擦焊中金属的连接不需要任何填充金属,所有类别的铝合金都可以连接,在某些理想的情况下,不同的金属成分和铝金属复合材料可以令人满意地连接。异种金属的连接已成为航空航天,汽车化工等行业的一种趋势,因为它有助于通过消除昂贵的材料来降低成本。通过测定搅拌摩擦焊中AA5052-AA6061板的温度分布,对其传热行为进行了实验研究。利用ANSYS有限元分析软件进行了三维瞬态分析。将热电偶放置在合适的位置,并从模拟结果中获取温度读数。将实验数据与数值模拟结果进行了比较。数值模拟结果与实验数据吻合较好。
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
Strojnicky Casopis
Strojnicky Casopis Engineering-Mechanical Engineering
CiteScore
2.00
自引率
0.00%
发文量
33
审稿时长
14 weeks
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