Huang Zhengwei, Song Ying, Zhao Xiaohua, Hou Huiming
Department of Civil and Environmental Engineering, Shantou University, Shantou 515063, China.
Key Laboratory of Structure and Wind Tunnel of Guangdong Higher Education Institutes, Shantou 515063, China.
Materials (Basel). 2023 Nov 8;16(22):7090. doi: 10.3390/ma16227090.
A three-dimensional theory has been established for the piezoresistivity of carbon nanotube (CNT) polymer composites. Based on the Mori-Tanaka method in meso-mechanics theory and considering quantum tunneling effect between CNTs, an approach to calculate equivalent electrical conductivity of composites was proposed. On this basis, a piezoresistive theory, which incorporates the effect of composites' geometric nonlinearity, was developed for CNT polymer composites. The theory is dependent only on some basic physical parameters of the materials. A finite element formula of the theory for the numerical calculation of piezoresistivity was presented from the analysis of both elastic and electric fields. Numerical simulations demonstrated that the results predicted by the theory were in good agreement with those of the experimental tests. Parameter sensitivity analysis revealed that when both the potential barrier height of the matrix and the initial average separation distance between CNTs increased, the piezoresistivity obviously increased. However, with the increase in aspect ratio and CNT conductivity, the piezoresistivity decreased gradually. A practical engineering application of this theory is also provided.
已建立了碳纳米管(CNT)聚合物复合材料压阻效应的三维理论。基于细观力学理论中的Mori-Tanaka方法并考虑碳纳米管之间的量子隧穿效应,提出了一种计算复合材料等效电导率的方法。在此基础上,针对碳纳米管聚合物复合材料,建立了一种考虑复合材料几何非线性效应的压阻理论。该理论仅取决于材料的一些基本物理参数。通过对弹性场和电场的分析,给出了该理论用于压阻数值计算的有限元公式。数值模拟表明,该理论预测结果与实验测试结果吻合良好。参数敏感性分析表明,当基体的势垒高度和碳纳米管之间的初始平均间距都增加时,压阻明显增大。然而,随着长径比和碳纳米管电导率的增加,压阻逐渐减小。还给出了该理论的一个实际工程应用。