Kim Chan-Jung
Department of Mechanical Design Engineering, Pukyong National University, 45 Yongso-ro, Nam-gu 48513, Korea.
Materials (Basel). 2019 Sep 15;12(18):2983. doi: 10.3390/ma12182983.
Carbon-fiber-reinforced plastic (CFRP) has been used in many industries owing to its excellent specific-strength characteristics; however, the control of its mechanical properties is difficult owing to the directivity nature of carbon fiber as well as the composition of layered structures. In addition, the damping coefficient of CFRP varies with spectral loading patterns under random and harmonic excitation owing to the high values of damping characteristics compared with conventional steel materials. A scaled sensitivity index was proposed to compare the magnitude of the frequency response function over two parameters of interest: the direction of the carbon fiber and the spectral loading pattern for CFRP specimens. Three specimens with different directions (0°, 45°, and 90°) were prepared and uniaxial excitation testing was conducted for two different spectral loading cases: random and harmonic. The summation of the frequency response was used to calculate the sensitivity index to eliminate the effects of the location of measurement data, and all sensitivity indexes were calculated using the measured responses. Finally, the sensitivity of each CFRP specimen was discussed for two cases, i.e., the direction of carbon fiber and the spectral loading pattern, using the scaled sensitivity index results.
碳纤维增强塑料(CFRP)因其优异的比强度特性已在许多行业中得到应用;然而,由于碳纤维的方向性以及层状结构的组成,其力学性能的控制较为困难。此外,与传统钢材相比,CFRP的阻尼特性值较高,其阻尼系数会因随机和谐波激励下的频谱加载模式而变化。提出了一种缩放灵敏度指标,以比较感兴趣的两个参数上频率响应函数的大小:碳纤维方向和CFRP试件的频谱加载模式。制备了三个不同方向(0°、45°和90°)的试件,并针对两种不同的频谱加载情况(随机和谐波)进行了单轴激励测试。频率响应的总和用于计算灵敏度指标,以消除测量数据位置的影响,所有灵敏度指标均使用测量响应进行计算。最后,利用缩放灵敏度指标结果,针对碳纤维方向和频谱加载模式这两种情况,讨论了每个CFRP试件的灵敏度。