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Control of Mechanical Properties According to Content Ratio of Copper Coated Carbon Nanotubes in Alumimum Composites 被引量:1
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作者 Jae Deuk Kim Ju Hyung Kim Xiao Hui Zhang Jung Hyun Park Joo Ho Cha Seung Il Jung 《Journal of Chemistry and Chemical Engineering》 2012年第5期455-461,共7页
The main objective of this study is to enhance the strength of CNTs (carbon nanotubes) which reinforced AI matrix composites by introducing an appropriate amount of Copper(Cu) into the composite material. AI-Cu/MW... The main objective of this study is to enhance the strength of CNTs (carbon nanotubes) which reinforced AI matrix composites by introducing an appropriate amount of Copper(Cu) into the composite material. AI-Cu/MWCNTs (multi-walled carbon nanotubes) nanocomposites were produced via compaction, sintering and hot extrusion process of AI-Cu/MWCNTs powders, which were fabricated by a conventional ball mill process with AI powders and Cu-MWCNTs composite powders which were synthesized by molecular level mixing technique. Also the change of mechanical properties with different content ratio of Cu/MWCNT composite powders in A1 matrix is analyzed. It is found that the addition of the proper Cu/MWCNTs powders which are well distributed in AI matrix leads to high mechanical stiffness. The 2 wt% Cu/MWCNTs reinforced A1 composites which exhibited 3.2 times higher tensile strength and 4.4 times higher yield strength than pure AI. 展开更多
关键词 CNT AI composite tensile strength ball-mill spark plasma sintering hot extrusion.
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