Carbon fiber-reinforced polymer(CFRP)is widely used in aerospace applications.This kind of material may face the threat of high-velocity impact in the process of dedicated service,and the relevant research mainly cons...Carbon fiber-reinforced polymer(CFRP)is widely used in aerospace applications.This kind of material may face the threat of high-velocity impact in the process of dedicated service,and the relevant research mainly considers the impact resistance of the material,and lacks the high-velocity impact damage monitoring research of CFRP.To solve this problem,a real high-velocity impact damage experiment and structural health monitoring(SHM)method of CFRP plate based on piezoelectric guided wave is proposed.The results show that CFRP has obvious perforation damage and fiber breakage when high-velocity impact occurs.It is also proved that guided wave SHM technology can be effectively used in the monitoring of such damage,and the damage can be reflected by quantifying the signal changes and damage index(DI).It provides a reference for further research on guided wave structure monitoring of high/hyper-velocity impact damage of CFRP.展开更多
通过试验研究了一种非热压罐(Out of Autoclave,简称OOA)预浸料T700SC/#2510层压板的低速冲击损伤特性。针对三种典型铺层方案,获得了层压板的凹坑深度-单位厚度冲击能量(d-e)、损伤面积-单位厚度冲击能量(S-e)和冲击后压缩强度-凹坑深...通过试验研究了一种非热压罐(Out of Autoclave,简称OOA)预浸料T700SC/#2510层压板的低速冲击损伤特性。针对三种典型铺层方案,获得了层压板的凹坑深度-单位厚度冲击能量(d-e)、损伤面积-单位厚度冲击能量(S-e)和冲击后压缩强度-凹坑深度(σ-d)曲线,以及三个批次的该OOA预浸料准各向同性层压板在标准冲击能量6.7J/mm下的剩余压缩强度结果。结果表明,T700SC/#2510材料体系冲击表面损伤不明显,但内部损伤却较大;该OOA预浸料的d-e曲线、S-e曲线和σ-d曲线均存在拐点现象;准各向同性铺层可以吸收更高的冲击能量,但也导致了更大的内部分层损伤;该OOA预浸料的CAI强度满足第二代OOA预浸料的指标。展开更多
基金supported by the National Natural Science Foundation of China(Nos.51921003,52275153)the Fundamental Research Funds for the Central Universities(No.NI2023001)+2 种基金the Research Fund of State Key Laboratory of Mechanics and Control for Aero-space Structures(No.MCAS-I-0423G01)the Fund of Pro-spective Layout of Scientific Research for Nanjing University of Aeronautics and Astronauticsthe Priority Academic Program Development of Jiangsu Higher Education Institu-tions of China.
文摘Carbon fiber-reinforced polymer(CFRP)is widely used in aerospace applications.This kind of material may face the threat of high-velocity impact in the process of dedicated service,and the relevant research mainly considers the impact resistance of the material,and lacks the high-velocity impact damage monitoring research of CFRP.To solve this problem,a real high-velocity impact damage experiment and structural health monitoring(SHM)method of CFRP plate based on piezoelectric guided wave is proposed.The results show that CFRP has obvious perforation damage and fiber breakage when high-velocity impact occurs.It is also proved that guided wave SHM technology can be effectively used in the monitoring of such damage,and the damage can be reflected by quantifying the signal changes and damage index(DI).It provides a reference for further research on guided wave structure monitoring of high/hyper-velocity impact damage of CFRP.
文摘通过试验研究了一种非热压罐(Out of Autoclave,简称OOA)预浸料T700SC/#2510层压板的低速冲击损伤特性。针对三种典型铺层方案,获得了层压板的凹坑深度-单位厚度冲击能量(d-e)、损伤面积-单位厚度冲击能量(S-e)和冲击后压缩强度-凹坑深度(σ-d)曲线,以及三个批次的该OOA预浸料准各向同性层压板在标准冲击能量6.7J/mm下的剩余压缩强度结果。结果表明,T700SC/#2510材料体系冲击表面损伤不明显,但内部损伤却较大;该OOA预浸料的d-e曲线、S-e曲线和σ-d曲线均存在拐点现象;准各向同性铺层可以吸收更高的冲击能量,但也导致了更大的内部分层损伤;该OOA预浸料的CAI强度满足第二代OOA预浸料的指标。