• HOME
  • NEWS
  • About US
    • P.I.
    • Faculties
  • STUDENTS
    • ALUMNI
  • Publications
    • Journal Articles
    • Conference Papers
  • Research
    • Research Directions
    • Projects
    • Experiment
logo
  • HOME
  • NEWS
  • About US
    P.I.
    Faculties
  • STUDENTS
    ALUMNI
  • Publications
    Journal Articles
    Conference Papers
  • Research
    Research Directions
    Projects
    Experiment

ZhaoSai`s Paper accepted by Composites Science and Technology!

分类:NEWS

祝贺赵赛关于混杂复合材料的冲击响应与厚度效应的论文“Thickness effect on ballistic impact behavior of hybrid carbon/ Kevlar composites”被“Composites Science and Technology”接收!

Details:Sai Zhao ,Jia Huang,Junchao Cao ,Yong Chen ,Xiaobiao Zuo,Kai Yi,Chao Zhang,Thickness effect on ballistic impact behavior of hybrid carbon/ Kevlar composites,Composites Science and Technology,254(2024)110692

Link:https://doi.org/10.1016/j.compscitech.2024.110692

ABSTRACT

Carbon fiber composites have poor impact resistance that constrains their wider application in advanced engineering structures, and hybridizing carbon fibers with Kevlar fibers is an effective method to enhance their impact resistance. The ballistic impact resistance can be optimized through regulating the hybridization layout and hybrid ratio, which requires systematically exploration on the inherent failure mechanism. In this work, the ballistic impact behavior of hybrid carbon/Kevlar fiber reinforced epoxy laminates against flat-head projectile are systematically investigated. Hybrid specimens with different thicknesses and hybridization ratios are designed, tested and compared. The results reveal the strong correlation between thickness and ballistic impact performance. When laminates are relatively thin, Kevlar fiber layers at the back surface impart superior impact resistance. In contrast, the opposite result is observed when the thickness is beyond a threshold value. With an increase in the Kevlar fiber hybridization ratio, this threshold value will occur in thinner laminates. Further analysis indicates that this phenomenon is related to a shear plugging effect that dominates the different modes of impact failure.

上一篇:Aijia`s Paper accepted by Composites Part B
下一篇:Gongzheng`s Paper accepted by Composite Structures!

热门推荐

  • Meihe`s Paper accepted by Energy Advances!
  • Honggang`s Paper accepted by International Journal of Impact Engineering!
  • Aijia`s Paper accepted by Composites Part B
  • ZhaoSai`s Paper accepted by Composites Science and Technology!
  • Gongzheng`s Paper accepted by Composite Structures!
  • Dengyong`s Paper accepted by Theoretical and Applied Fracture Mechanics!
  • Yuqi`s Paper accepted by Engineering Fracture Mechanics!
  • Huanfang`s Paper accepted by Composites Part A!
  • Jiahui`s Paper accepted by Polymer !
  • Junchao`s Paper accepted by Composites Science and Technology!

联系我们

西北工业大学冲击动力学研究小组

手机:

邮箱:chaozhang@nwpu.edu.cn

地址:陕西省西安市碑林区友谊西路127号

Copyright © 2023 zhangchao
陕ICP备2022002662号
陕西省西安市碑林区友谊西路127号