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Microstructure and microtexture evolution of aluminum alloy 3003 under ultrasonic welding process for embedding SiC fibre 被引量:1

Microstructure and microtexture evolution of aluminum alloy 3003 under ultrasonic welding process for embedding SiC fibre
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摘要 Ultrasonic welding process can be used for bonding metal foils which is the fundament of ultrasonic consolidation (UC). UC process can be used to embed reinforcement fibres such as SiC fibres within an aluminum matrix materials. In this research we are investigating the phenomena occurring in the microstructure of the parts during ultrasonic welding process to obtain better understanding about how and why the process works. High-resolution electron backscatter diffraction ( EBSD ) is used to study the effects of the vibration on the evolution of microstructure in AA3003. The inverse pole figures (IPF) and the correlated misorientation angle distribution of the mentioned samples are obtained. The characteristics of the crystallographic orientation, the grain structure and the grain boundary are analyzed to find the effect of ultrasonic vibration on the microstructure and microtexture of the bond. The ultrasonic vibration will lead to exceptional refinement of grains to a micron level along the bond area and affect the crystallographic orientation. Ultrasonic vibration results in a very weak texture. Plastic flow occurs in the grain after welding process and there is additional plastic flow around the fibre which leads to the fibre embedding. Ultrasonic welding process can be used for bonding metal foils which is the fundament of ultrasonic consolidation (UC). UC process can be used to embed reinforcement fibres such as SiC fibres within an aluminum matrix materials. In this research we are investigating the phenomena occurring in the microstructure of the parts during ultrasonic welding process to obtain better understanding about how and why the process works. High-resolution electron backscatter diffraction ( EBSD ) is used to study the effects of the vibration on the evolution of microstructure in AA3003. The inverse pole figures (IPF) and the correlated misorientation angle distribution of the mentioned samples are obtained. The characteristics of the crystallographic orientation, the grain structure and the grain boundary are analyzed to find the effect of ultrasonic vibration on the microstructure and microtexture of the bond. The ultrasonic vibration will lead to exceptional refinement of grains to a micron level along the bond area and affect the crystallographic orientation. Ultrasonic vibration results in a very weak texture. Plastic flow occurs in the grain after welding process and there is additional plastic flow around the fibre which leads to the fibre embedding.
出处 《China Welding》 EI CAS 2009年第4期6-9,共4页 中国焊接(英文版)
基金 Acknowledgement The authors wish to thank the financial support for this research from the National Natural Science Foundation of China (Grant No. 50865007) and the Natural Science Foundation of Jiangxi Province (No. 2007GQC1825).
关键词 electron backscatter diffraction ultrasonic metal welding AA3003 electron backscatter diffraction, ultrasonic metal welding, AA3003
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  • 1Siddiq A, Ghassemieh E. Theoretical and FE analysis of ultrasonic welding of aluminum alloy 3003. Journal of Manufacturing Science and Engineering-Transactions of the Asme, 2009,131 (4) : 1 -11.
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  • 3White D R. Ultrasonic consolidation of aluminum tooling. Advanced Materials & Processes, 2003, 161 ( 1 ) : 64 -65.
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  • 6Kong C Y, Soar R. Method for embedding optical fibers in an aluminum matrix by ultrasonic consolidation. Applied Optics, 2005, 44(30) : 6325 -6333.

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