Liu Menglong, Zhang Yaohui, Li Lun, Chen Gongfa, Cui Fangsen
School of Mechanical Engineering and Automation, Harbin Institute of Technology, Shenzhen 518055, China.
School of Civil and Transportation Engineering, Guangdong University of Technology, Guangzhou 510006, China.
Materials (Basel). 2022 Dec 7;15(24):8715. doi: 10.3390/ma15248715.
Accurate measurement of the material parameters of composite in a nondestructive manner is of great significance for evaluating mechanical performance. This study proposes to use a genetic algorithm (GA) to reconstruct the stiffness matrix of carbon fiber reinforced polymer (CFRP) with array-guided wave (GW)-based GA. By comparing the numerically calculated GW dispersion curves with the experimental wave number-frequency contour calculated with a two-dimensional Fourier transform (2D-FFT), the matching coefficient is directly obtained as the objective function of the GA, avoiding the overhead of sorting out the respective GW modes. Then the measured stiffness matrix with tensile testing and the longitudinal wave in the unidirectional CFRP is compared with the reconstructed parameters from unidirectional, cross-ply, and quasi-isotropic CFRPs with the GA. For the four independent parameters, excluding C12, an average value of 11.62% for the maximum deviation is achieved among the CFRPs with three stacking sequences, and an average deviation of 11.03% in unidirectional CFRPs is achieved for the parameters measured with different methods. A further correction of fiber orientation results in a relative deviation of only 2.72% for the elastic modulus along the tensile direction, and an expansion of the GW frequency range for the GA narrows down the relative deviation of C12 to 3.9%. The proposed GW-based GA opens up a way of in situ and nondestructive measurement for the composite stiffness matrix.
以无损方式准确测量复合材料的材料参数对于评估其力学性能具有重要意义。本研究提出使用遗传算法(GA),基于阵列导波(GW)的GA来重构碳纤维增强聚合物(CFRP)的刚度矩阵。通过将数值计算的GW频散曲线与用二维傅里叶变换(2D - FFT)计算的实验波数 - 频率等值线进行比较,直接获得匹配系数作为GA的目标函数,避免了分辨各个GW模式的开销。然后将通过拉伸试验测得的刚度矩阵以及单向CFRP中的纵波与用GA从单向、正交铺层和准各向同性CFRP重构的参数进行比较。对于四个独立参数(不包括C12),在具有三种堆叠顺序的CFRP中,最大偏差的平均值为11.62%,在用不同方法测量的单向CFRP参数中,平均偏差为11.03%。对纤维取向的进一步校正使得沿拉伸方向的弹性模量的相对偏差仅为2.72%,并且GA的GW频率范围的扩展将C12的相对偏差缩小到3.9%。所提出的基于GW的GA为复合材料刚度矩阵的原位无损测量开辟了一条途径。