Go Sun-Ho, Tugirumubano Alexandre, Kim Hong-Gun
Mechanical Testing Center, ITEL Co. LTD., Cheong-ju 28220, Korea.
Institute of Carbon Technology, Jeonju University, Jeonju-si 55069, Korea.
Polymers (Basel). 2021 Jan 8;13(2):203. doi: 10.3390/polym13020203.
With the increasing use of carbon fiber reinforced plastics in various fields, carbon fiber composites based on prepregs have attracted attention in industries and academia research. However, prepreg manufacturing processes are costly, and the strength of structures varies depending on the orientation and defects (pores and delamination). For the non-contact evaluation of internal defects, the lock-in infrared thermography was proposed to investigate the defects in the composites subjected to the compression after impact test (CAI). The drop-weight impact test was conducted to study the impact behavior of the composites according to fibers orientation for composite fabricated using unidirectional (UD) carbon fiber prepregs. Using CAI tests, the residual compressive strengths were determined, and the damage modes were detected using a thermal camera. The results of the drop weight impact tests showed that the specimen laminated at 0° suffered the largest damage because of susceptibility of the resin to impact. The specimens with 0°/90° and +45°/-45° fibers orientation exhibited more than 90% of the impact energy absorption and good impact resistance. Furthermore, the specimens that underwent the impact tests were subjected to compressive test simultaneously with the lock-in thermography defects detection. The results showed that internal delamination, fibers splitting, and broken fibers occurred. The temperature differences in the residual compression tests were not significant.
随着碳纤维增强塑料在各个领域的使用日益增加,基于预浸料的碳纤维复合材料在工业和学术研究中受到了关注。然而,预浸料制造工艺成本高昂,并且结构强度会因取向和缺陷(孔隙和分层)而有所不同。对于内部缺陷的非接触式评估,提出了锁相红外热成像技术来研究复合材料在冲击后压缩试验(CAI)中的缺陷。进行了落锤冲击试验,以研究使用单向(UD)碳纤维预浸料制造的复合材料根据纤维取向的冲击行为。通过CAI试验确定了残余抗压强度,并使用热像仪检测了损伤模式。落锤冲击试验结果表明,由于树脂易受冲击,0°层压的试样遭受的损伤最大。纤维取向为0°/90°和+45°/-45°的试样表现出超过90%的冲击能量吸收和良好的抗冲击性。此外,对经过冲击试验的试样在进行锁相热成像缺陷检测的同时进行压缩试验。结果表明出现了内部分层、纤维分裂和纤维断裂。残余压缩试验中的温度差异不显著。