Zhang Hongji, Han Yang, Ge Yuanyuan, Sun Zhiyong
School of Energy Engineering, Yulin University, Yulin 719000, China.
School of Mechanical Engineering, Shaanxi University of Technology, Hanzhong 723001, China.
Polymers (Basel). 2023 Jan 17;15(3):484. doi: 10.3390/polym15030484.
In this study, a unidirectional and plain weave carbon fiber/epoxy prepreg was used as the raw material, and the prepreg tape winding process was used to prepare carbon fiber/epoxy prepreg composites with 65% and 75% carbon fiber volume content, respectively. Based on traditional damage experiments and mechanical measurements, electrical measurements are introduced to study the damage to carbon fiber prepreg composites. The damage behavior of the carbon fiber prepreg composite under a high-speed impact load was monitored using the resistance method. By arranging electrodes on the sample and tracking the change in resistance during the entire process of high-speed impact of the material, the relationship between the damage and the change in resistance parameters of the carbon fiber prepreg composite winding products under high-speed impact was determined. The stress-strain curve and the final failure mode of the sample and the microstructure mechanics of carbon fiber prepreg winding products under different strain rates were analyzed. These results indicate that, as the change in resistance over time was almost stable from 0 to 200 μs. From 200 to 250 μs, the resistance decreases sharply; from 250 to 400 μs, the resistance approximates a plateau. From 400 to 500 μs, the resistance value increases again; at this time, the resistance value decreases to 3.2% of the initial resistance value.
在本研究中,采用单向平纹编织碳纤维/环氧树脂预浸料作为原材料,并利用预浸料带缠绕工艺分别制备了碳纤维体积含量为65%和75%的碳纤维/环氧树脂预浸料复合材料。基于传统损伤实验和力学测量,引入电学测量来研究碳纤维预浸料复合材料的损伤情况。采用电阻法监测碳纤维预浸料复合材料在高速冲击载荷下的损伤行为。通过在样品上布置电极并跟踪材料高速冲击全过程中的电阻变化,确定了碳纤维预浸料复合材料缠绕制品在高速冲击下损伤与电阻参数变化之间的关系。分析了不同应变率下样品的应力-应变曲线、最终失效模式以及碳纤维预浸料缠绕制品的微观结构力学。这些结果表明,电阻随时间的变化在0至200μs时几乎稳定。从200至250μs,电阻急剧下降;从250至400μs,电阻近似为一个平台期。从400至500μs,电阻值再次上升;此时,电阻值降至初始电阻值的3.2%。