Improved mechanical and electrical properties of copper-aluminum joints with highly aligned graphene reinforcement via friction stir spot welding

被引:6
作者
Isa, Mohammad Syahid Mohd [1 ]
Muhamad, Mohd Ridha [1 ,2 ]
Yusof, Farazila [1 ,2 ]
Yusoff, Nukman [1 ]
Brytan, Zbigniew [3 ]
Suga, Tetsuo [4 ]
Morisada, Yoshiaki [4 ]
Fujii, Hidetoshi [4 ]
机构
[1] Univ Malaya, Fac Engn, Dept Mech Engn, Kuala Lumpur 50603, Malaysia
[2] Univ Malaya, Ctr Adv Mfg & Mat Proc, AMMP Ctr, Kuala Lumpur 50603, Malaysia
[3] Silesian Tech Univ, Fac Mech Engn, Dept Engn Mat & Biomat, PL-44100 Gliwice, Poland
[4] Osaka Univ, Joining & Welding Res Inst, Ibaraki 5670047, Japan
来源
JOURNAL OF MATERIALS RESEARCH AND TECHNOLOGY-JMR&T | 2023年 / 24卷
关键词
Friction stir spot welding; Dissimilar metal joint; Nanomaterial additives; Highly-aligned graphene; Copper; Aluminum; MATERIAL FLOW; MICROSTRUCTURE EVOLUTION; PERFORMANCE; STRENGTH; BEHAVIOR; 6061-T6; CU;
D O I
10.1016/j.jmrt.2023.05.155
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This study demonstrates the potential of friction stir spot welding (FSSW) for producing highly aligned graphene configurations in copper-aluminum joints, resulting in improved mechanical and electrical properties. Pure copper and AA6061 sheet were welded with 0.5% graphene nanoparticles dispersed in ethanol drop cast at the interface. Under optimized experimental conditions, adding a graphene interlayer results in a 15.6% increase in maximum shear strength, a 46% increase in hardness value, and a 23% reduction in joint electrical resistance. Transmission electron microscopy confirmed that the laminar flow behavior of the material aligns the graphene nanoparticles parallel to the tool surface di-rection. The mechanical improvements are attributed to the reduction of grain size and the plastic incompatibilities that arise at the metal-graphene interface. The highly aligned graphene configuration provides more conductive paths and acts as a bridge between grains to reduce grain boundary resistance, reducing electrical resistance. These findings pave the way for exploring the possibilities of utilizing the anisotropic properties of gra-phene in material joining applications.& COPY; 2023 The Author(s). Published by Elsevier B.V. This is an open access article under the CC BY license (http://creativecommons.org/licenses/by/4.0/).
引用
收藏
页码:9203 / 9215
页数:13
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