Fang Mei, Zhang Na, Huang Ming, Lu Bo, Lamnawar Khalid, Liu Chuntai, Shen Changyu
National Engineering Research Center for Advanced Polymer Processing Technology, Zhengzhou University, Zhengzhou 450002, China.
Ingénierie des Matériaux Polymères, UMR 5223, CNRS, INSA Lyon, Université de Lyon, Villeurbanne 69622, France.
Polymers (Basel). 2020 Oct 23;12(11):2453. doi: 10.3390/polym12112453.
Carbon fiber reinforced polycarbonate (CF/PC) composites have attracted attention for their excellent performances. However, their performances are greatly affected by environmental factors. In this work, the composites were exposed to hydrothermal aging to investigate the effects of a hot and humid environment. The mechanical properties of CF/PC composites with different aging times (0, 7, 14, 21, 28, 35, and 42 days) were analyzed. It was demonstrated that the storage modulus of CF/PC composites with hot water aged for seven days has the highest value in this sampling period and frequency. Through the solid particle erosion experiment, it was found that the hydrothermal aging causes the deviation of the maximum erosion angle of composites, indicating the composites underwent ductile-brittle transformation. Furthermore, the crack and cavity resulting from the absorption of water was observed via the scanning electron microscope (SEM). This suggested that the hydrothermal aging leads to the plasticization and degradation of CF/PC composites, resulting in a reduction of corrosion resistance.
碳纤维增强聚碳酸酯(CF/PC)复合材料因其优异的性能而备受关注。然而,其性能受到环境因素的极大影响。在本研究中,将复合材料进行水热老化处理,以研究高温高湿环境的影响。分析了不同老化时间(0、7、14、21、28、35和42天)的CF/PC复合材料的力学性能。结果表明,在该采样周期和频率下,热水老化7天的CF/PC复合材料的储能模量具有最高值。通过固体颗粒冲蚀实验发现,水热老化导致复合材料最大冲蚀角发生偏差,表明复合材料发生了延性-脆性转变。此外,通过扫描电子显微镜(SEM)观察到了因吸水而产生的裂纹和孔洞。这表明水热老化导致CF/PC复合材料发生增塑和降解,从而降低了耐腐蚀性。