Multi-scale numerical simulations of thermal expansion properties of CNT-reinforced nanocomposites

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作者
Ning Alamusi
Jianhui Hu
Yuan Qiu
Christiana Li
Satoshi Chang
Hisao Atobe
Yaolu Fukunaga
Huiming Liu
Liangke Ning
Jinhua Wu
Weifeng Li
Tomonori Yuan
Cheng Watanabe
Yajun Yan
机构
[1] Chiba University,Department of Mechanical Engineering
[2] Southwest University of Science and Technology,School of Manufacturing Science and Engineering
[3] Akita Prefectural University,Department of Machine Intelligence and Systems Engineering
[4] Tohoku University,Department of Nanomechanics
[5] University of Houston,Department of Mechanical Engineering
[6] Tohoku University,Department of Aerospace Engineering
[7] Queensland University of Technology,School of Engineering Systems
[8] Beijing University of Chemical Technology,College of Mechanical and Electrical Engineering
关键词
Polymer-matrix composites (PMC); Thermal properties; Numerical analysis; Carbon nanotube (CNT);
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摘要
In this work, the thermal expansion properties of carbon nanotube (CNT)-reinforced nanocomposites with CNT content ranging from 1 to 15 wt% were evaluated using a multi-scale numerical approach, in which the effects of two parameters, i.e., temperature and CNT content, were investigated extensively. For all CNT contents, the obtained results clearly revealed that within a wide low-temperature range (30°C ~ 62°C), thermal contraction is observed, while thermal expansion occurs in a high-temperature range (62°C ~ 120°C). It was found that at any specified CNT content, the thermal expansion properties vary with temperature - as temperature increases, the thermal expansion rate increases linearly. However, at a specified temperature, the absolute value of the thermal expansion rate decreases nonlinearly as the CNT content increases. Moreover, the results provided by the present multi-scale numerical model were in good agreement with those obtained from the corresponding theoretical analyses and experimental measurements in this work, which indicates that this multi-scale numerical approach provides a powerful tool to evaluate the thermal expansion properties of any type of CNT/polymer nanocomposites and therefore promotes the understanding on the thermal behaviors of CNT/polymer nanocomposites for their applications in temperature sensors, nanoelectronics devices, etc.
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