Nadeem M Mohammed, Quadros Jaimon Dennis, Mogul Yakub Iqbal, Mohin Ma, Aabid Abdul, Baig Muneer, Ahmed Omar Shabbir
Senior Lecturer of Mechanical Engineering, University of Bolton, RAK Academic Center, 16038, Ras Al Khaimah, United Arab Emirates.
National Centre for Motorsport Engineering, University of Bolton, Deane Road, Bolton, BL3 5AB, UK.
Heliyon. 2024 Sep 26;10(19):e38232. doi: 10.1016/j.heliyon.2024.e38232. eCollection 2024 Oct 15.
The present work investigates the mechanical properties of a composite material composed of multi-walled carbon nanotubes (MWCNTs), nano-aluminum powder (NAP), and glass fibers (GF) for five different compositions. The study further investigated how MWCNTs contribute to maintaining the mechanical properties of nanocomposites when exposed to elevated temperatures, up to 180 °C. The evaluation of impact strength revealed that the nanocomposite, composed of 2 % MWCNTs, 15 % NAP, and 10 % GF, demonstrated the greatest impact strength. At room temperature, the composite containing 2 % MWCNTs, 5 % NAP, and 20 % GF exhibited the highest ultimate tensile strength (UTS). Conversely, at elevated temperatures reaching up to 180 °C, the highest UTS was observed in the composition with 2 % MWCNTs, 10 % NAP, and 15 % GF. The hardness of the nanocomposite was influenced by its composition; at room temperature, the maximum hardness was observed in the mixture containing 2 % MWCNTs, 20 % NAP, and 5 % GF. In contrast, at elevated temperatures, the composition with 2 % MWCNTs, 5 % NAP, and 20 % GF exhibited the highest hardness. Overall, the study found that incorporating GF and NAP improved the mechanical properties of the composite. These results indicate that the composite's performance could be further optimized for specific applications through the addition of filler materials.
本研究针对由多壁碳纳米管(MWCNT)、纳米铝粉(NAP)和玻璃纤维(GF)组成的复合材料的五种不同成分,研究了其力学性能。该研究进一步探究了MWCNT在高达180°C的高温下如何有助于维持纳米复合材料的力学性能。冲击强度评估表明,由2%的MWCNT、15%的NAP和10%的GF组成的纳米复合材料具有最大的冲击强度。在室温下,含有2%的MWCNT、5%的NAP和20%的GF的复合材料表现出最高的极限抗拉强度(UTS)。相反,在高达180°C的高温下,在含有2%的MWCNT、10%的NAP和15%的GF的成分中观察到最高的UTS。纳米复合材料的硬度受其成分影响;在室温下,在含有2%的MWCNT、20%的NAP和5%的GF的混合物中观察到最大硬度。相比之下,在高温下,含有2%的MWCNT、5%的NAP和20%的GF的成分表现出最高硬度。总体而言,该研究发现加入GF和NAP可改善复合材料的力学性能。这些结果表明,通过添加填充材料,复合材料的性能可针对特定应用进一步优化。