Zhang Yongqiang, Li Yue, Zhang Jialei, Pan Jinwu, Zhang Li, Tan Fuli, Wei Hongjian, Zhang Wei
Institute of Fluid Physics, China Academy of Engineering Physics, Mianyang 621900, China.
High Velocity Impact Dynamics Lab, Harbin Institute of Technology, Harbin 150080, China.
Materials (Basel). 2021 Nov 26;14(23):7214. doi: 10.3390/ma14237214.
Carbon fiber-reinforced polymer (CFRP) has the advantages of a high strength-weight ratio and excellent fatigue resistance and has been widely used in aerospace, automotive, civil infrastructure, and other fields. The properties of CFRP materials under high temperatures are a key design issue. This paper presents the quasi-static tensile mechanical properties of unidirectional CFRP plates at temperatures ranging from 20 to 600 °C experimentally. The laser displacement transducer was adopted to capture the in situ displacement of the tested specimen. The results showed that the tensile strength of the CFRP specimen was affected by the high-temperature effect significantly, which dropped 68% and 16% for the 200 and 600 °C, respectively, compared with that of the room temperature. The degradation measured by the laser transducer system was more intensive compared with previous studies. The elastic modulus decreased to about 29% of the room temperature value at 200 °C. With the evaporation of the resin, the failure modes of the CFRP experienced brittle fracture to pullout of the fiber tow. The study provides accurate tensile performance of the CFRP plate under high-temperature exposure, which is helpful for the engineering application.
碳纤维增强聚合物(CFRP)具有高强度重量比和出色的抗疲劳性能等优点,已广泛应用于航空航天、汽车、民用基础设施等领域。CFRP材料在高温下的性能是一个关键的设计问题。本文通过实验研究了单向CFRP板在20至600°C温度范围内的准静态拉伸力学性能。采用激光位移传感器采集测试试件的原位位移。结果表明,CFRP试件的拉伸强度受高温影响显著,与室温相比,200°C和600°C时分别下降了68%和16%。与以往研究相比,激光传感器系统测量的降解更为严重。在200°C时,弹性模量降至室温值的约29%。随着树脂的蒸发,CFRP的失效模式经历了从脆性断裂到纤维束拔出的过程。该研究提供了高温暴露下CFRP板准确的拉伸性能,有助于工程应用。