Wang Wen-Jing, Yung Kam-Chuen, Tang An-Dong, Choy Hang-Shan, Lv Zheng
School of Materials Science and Engineering, University of Science and Technology Beijing, Beijing 100083, China.
Institute for Advanced Materials and Technology, University of Science and Technology Beijing, Beijing 100083, China.
Materials (Basel). 2021 Sep 26;14(19):5576. doi: 10.3390/ma14195576.
Carbon nanotubes (CNTs) reinforced aluminum matrix nanocomposites were fabricated by Accumulative Roll Bonding (ARB). The surface morphologies, mechanical properties, grains texture and orientation of the Al/CNTs nanocomposites were characterized, and the mechanisms and influences of CNTs contents and ARB cycles on the mechanical performance and grain textures of Al/CNTs were investigated and revealed. The strength of the composites rose with increase of the CNTs content, and the ARB cycles showed a 26% improvement when the CNTs content varied from 0 to 1 volume percent (vol.%). The increase in the mass fraction of the carbon nanotubes made the grain distribution in the Al/CNTs nanocomposite samples more diffuse. Besides, the stable texture of the hot rolled crystal grains on the α orientation are constantly turning to {011}< 011> with the mass fraction of the reinforcing phase increased.
通过累积轧制复合(ARB)工艺制备了碳纳米管(CNT)增强铝基纳米复合材料。对Al/CNT纳米复合材料的表面形貌、力学性能、晶粒织构和取向进行了表征,研究并揭示了CNT含量和ARB循环次数对Al/CNT力学性能和晶粒织构的影响机制。复合材料的强度随着CNT含量的增加而提高,当CNT含量从0体积百分比(vol.%)变化到1 vol.%时,ARB循环次数使强度提高了26%。碳纳米管质量分数的增加使得Al/CNT纳米复合材料样品中的晶粒分布更加弥散。此外,随着增强相质量分数的增加,热轧晶粒在α取向的稳定织构不断转向{011}<011>。