EXPERIMENTAL AND NUMERICAL CHARACTERIZATION OF HIGH-VELOCITY IMPACT DAMAGE IN CFRP LAMINATES

被引:0
|
作者
Yashiro, Shigeki [1 ]
Ogi, Keiji [2 ]
Yoshimura, Akinori [3 ]
Sakaida, Yoshihisa [1 ]
机构
[1] Shizuoka Univ, Dept Mech Engn, Naka Ku, 3-5-1 Johoku, Hamamatsu, Shizuoka 4328561, Japan
[2] Ehime Univ, Grad Sch Sci & Engn, Matsuyama, Ehime 7908577, Japan
[3] Japan Aerosp Explorat Agcy JAXA, Aeronaut Technol Directorate, Mitaka, Tokyo 1810015, Japan
基金
日本学术振兴会;
关键词
Polymer-matrix composites (PMCs); Impact behavior; Delamination; Smoothed particle dynamics (SPH); COMPOSITE; PREDICTION; SIMULATION;
D O I
暂无
中图分类号
TB33 [复合材料];
学科分类号
摘要
This study experimentally and numerically characterizes the high-velocity impact damage in CFRP laminates to clarify the damage extension mechanisms. To this end, we focus on impact damage near perforation. High-velocity impact tests were conducted for two types of cross-ply laminates. At a relatively low velocity less than 200 m/s, a crater with fiber breaks, oblique matrix cracks, and delamination were observed just beneath the impact point. Delamination had a fan shape, which was similar to that observed in low-velocity impact tests. Catastrophic ply-failure zone, which included extensive fiber breaks, matrix cracking, matrix crushing, and delamination, appeared in the middle of the laminate at an impact velocity over 300 m/s. The extension of high-velocity impact damage in composite laminate was then predicted by smoothed particle hydrodynamics (SPH). A crater was formed by matrix failure and fiber breaks generated in the top 0 degrees ply near the impact point. Ply interfaces were then delaminated, and a matrix cracking and crushing zone appeared in the middle plies. This damage pattern, including the delamination shape, agreed with the observation. Delamination mainly extended at a ply-interface along the matrix crack in the lower ply regardless of the stacking sequence. Based on the experiments and the analyses, the mechanisms of high-velocity impact damage in CFRP laminates will be discussed.
引用
收藏
页数:11
相关论文
共 50 条
  • [41] Experimental damage tolerance evaluation of thick fabric carbon/epoxy laminates under low-velocity and high-velocity impact and compression-after-impact
    van Hoorn, Niels
    Kassapoglou, Christos
    Turteltaub, Sergio
    van den Brink, Wouter
    [J]. JOURNAL OF COMPOSITE MATERIALS, 2022, 56 (05) : 761 - 778
  • [42] PHYSICS OF THE DAMAGE FROM HIGH-VELOCITY IMPACT
    ANISIMOV, SI
    BUSHMAN, AV
    KANEL, GI
    KONSTANTINOV, AB
    SAGDEEV, RZ
    SUGAK, SG
    FORTOV, VE
    [J]. JETP LETTERS, 1984, 39 (01) : 8 - 12
  • [43] Coupled Thermo-Mechanical Numerical Modeling of CFRP Panel under High-Velocity Impact
    Polla, Alessandro
    Frulla, Giacomo
    Cestino, Enrico
    Das, Raj
    Marzocca, Pier
    [J]. AEROSPACE, 2023, 10 (04)
  • [44] Drilling-induced damage in CFRP laminates: Experimental and numerical analysis
    Phadnis, Vaibhav
    Makhdum, Farrukh
    Roy, Anish
    Silberschmidt, Vadim
    [J]. ADVANCED MATERIALS AND STRUCTURES IV, 2012, 188 : 150 - 157
  • [45] High-velocity impact characteristic of Mg alloy and CFRP composite
    Hwang, Do-Yeon
    Shimamoto, Akira
    Takayama, Kazuyoshi
    [J]. ADVANCES IN COMPOSITE MATERIALS AND STRUCTURES, PTS 1 AND 2, 2007, 334-335 : 185 - +
  • [46] High-velocity impact deformation and perforation of fibre metal laminates
    Cihan Kaboglu
    Iman Mohagheghian
    Jin Zhou
    Zhongwei Guan
    Wesley Cantwell
    Sabu John
    Bamber R. K. Blackman
    Anthony J. Kinloch
    John P. Dear
    [J]. Journal of Materials Science, 2018, 53 : 4209 - 4228
  • [47] High-velocity impact deformation and perforation of fibre metal laminates
    Kaboglu, Cihan
    Mohagheghian, Iman
    Zhou, Jin
    Guan, Zhongwei
    Cantwell, Wesley
    John, Sabu
    Blackman, Bamber R. K.
    Kinloch, Anthony J.
    Dear, John P.
    [J]. JOURNAL OF MATERIALS SCIENCE, 2018, 53 (06) : 4209 - 4228
  • [48] THE INFLUENCE OF TARGET GEOMETRY ON THE HIGH-VELOCITY IMPACT RESPONSE OF CFRP
    CANTWELL, WJ
    [J]. COMPOSITE STRUCTURES, 1988, 10 (03) : 247 - 265
  • [49] Numerical Modeling of High-Velocity Impact Welding
    Nassiri, Ali
    Zhang, Shunyi
    Abke, Tim
    Vivek, Anupam
    Kinsey, Brad
    Daehn, Glenn
    [J]. PROCEEDINGS OF THE 3RD PAN AMERICAN MATERIALS CONGRESS, 2017, : 83 - 93
  • [50] High-velocity impact response of fiber metal laminates: Experimental investigation of projectile's deformability
    Sangsefidi, Milad
    Sabouri, Hadi
    Mir, Mohammad
    Hasanpour, Amin
    [J]. THIN-WALLED STRUCTURES, 2021, 159