首页|期刊导航|Defence Technology(防务技术)|Characterization of ultrahigh-strain-rate compressive behaviors in single 10-μm scale fibers using a micro-scale Hopkinson bar method
Characterization of ultrahigh-strain-rate compressive behaviors in single 10-μm scale fibers using a micro-scale Hopkinson bar method
Liang Ma Lingxin Hu Haoxiang Wang Yichao Yuan Jian Wei Xiaoxin Zhao Kunkun Zeng Yuze Zhao Zhiyin Zhao Jiagui Liu Shizhao Chen Jinling Gao
Defence Technology(防务技术)2026,Vol.56Issue(2):P.270-281,12.
Defence Technology(防务技术)2026,Vol.56Issue(2):P.270-281,12.DOI:10.1016/j.dt.2025.09.023
Characterization of ultrahigh-strain-rate compressive behaviors in single 10-μm scale fibers using a micro-scale Hopkinson bar method
摘要
关键词
Single fiber/Transverse compression/Ultrahigh strain rate/Microscale Hopkinson bar/Laser Doppler velocimetry分类
化学化工引用本文复制引用
Liang Ma,Lingxin Hu,Haoxiang Wang,Yichao Yuan,Jian Wei,Xiaoxin Zhao,Kunkun Zeng,Yuze Zhao,Zhiyin Zhao,Jiagui Liu,Shizhao Chen,Jinling Gao..Characterization of ultrahigh-strain-rate compressive behaviors in single 10-μm scale fibers using a micro-scale Hopkinson bar method[J].Defence Technology(防务技术),2026,56(2):P.270-281,12.基金项目
financial support provided by the National Natural Science Foundation of China(Grant No.12302472) (Grant No.12302472)
the Science and Technology Support Program of Jiangsu Province(Grant No.BK20230874) (Grant No.BK20230874)
the Aeronautical Science Fund(ASF)(Grant No.2023Z057052005) (ASF)
the Research Fund of State Key Laboratory of Mechanics and Control for Aerospace Structures(Nanjing University of Aeronautics and Astronautics)(Grant No.MCAS-I-0124G02) (Nanjing University of Aeronautics and Astronautics)
the funding received from Jiangsu Hanvo Safety Product Co.,Ltd。 ()