Low-velocity impact response of fiber-metal laminates consisting of different standard GLARE grades

被引:11
|
作者
Bikakis, George S. E. [1 ]
Karaiskos, Evangelos [1 ]
Sideridis, Emilios P. [1 ]
机构
[1] Natl Tech Univ Athens, Strength Mat Lab, Athens, Greece
关键词
GLARE; fiber-metal laminate; low-velocity impact; circular plate; impact load; impact energy; LATERAL INDENTATION; CYLINDRICAL-SHELLS; STACKING-SEQUENCE; DYNAMIC-RESPONSE; PLATES; DAMAGE; RESISTANCE; BEHAVIORS; THICKNESS; FATIGUE;
D O I
10.1177/0731684416633770
中图分类号
TB33 [复合材料];
学科分类号
摘要
This article deals with the dynamic response of thin circular clamped GLARE (GLAss REinforced) fiber-metal laminates subjected to low-velocity impact by a lateral hemispherical impactor, striking at the center with constant kinetic energy. The laminates have equal total thickness and consist of GLARE 2A-3/2-0.4, GLARE 2A-4/3-0.238, GLARE 3-3/2-0.4, GLARE 4-3/2-0.317, and GLARE 5-3/2-0.233 standard grades. Three different plate diameters are considered for each GLARE grade. Their dynamic response is predicted by solving previously published differential equations of motion corresponding to a spring-mass modeling of the impact phenomenon. The obtained results are analyzed and compared in order to understand and evaluate the performance of the examined material grades along with the effect of different plate radius. With reference to the radius variation, it is found that it affects substantially the overall impact behavior of a GLARE plate. As far as the examined material grades are concerned, similarities and differences related with their impact behavior are recorded and a comparative evaluation is implemented. Characteristic variables associated with the low-velocity impact response of fiber-metal laminates are discussed and pertinent design recommendations are proposed.
引用
收藏
页码:1029 / 1040
页数:12
相关论文
共 50 条
  • [21] Fabrication of high-stiffness fiber-metal laminates and study of their behavior under low-velocity impact loadings
    Lee, Dong-Woo
    Park, Byung-Jin
    Park, Sang-Yoon
    Choi, Chi-Hoon
    Song, Jung-Il
    COMPOSITE STRUCTURES, 2018, 189 : 61 - 69
  • [22] Dynamic response of slender multilayer sandwich beams with fiber-metal laminate face-sheets subjected to low-velocity impact
    Yuan, Hui
    Zhang, Jianxun
    THIN-WALLED STRUCTURES, 2022, 172
  • [23] Low-velocity impact behavior of fiber metal laminates
    Tsartsaris, N.
    Meo, M.
    Dolce, F.
    Polimeno, U.
    Guida, M.
    Marulo, F.
    JOURNAL OF COMPOSITE MATERIALS, 2011, 45 (07) : 803 - 814
  • [24] Soft impact of GLARE fiber metal laminates
    Li, Kaikai
    Qin, Qinghua
    Cui, Tianning
    Han, Qigang
    Peng, Jixiang
    Sha, Zhendong
    Zhang, Wei
    INTERNATIONAL JOURNAL OF IMPACT ENGINEERING, 2023, 178
  • [25] Effect of metal type on the energy absorption of fiber metal laminates under low-velocity impact
    Chen, Yong
    Chen, Liming
    Huang, Qiong
    Zhang, Zhigang
    MECHANICS OF ADVANCED MATERIALS AND STRUCTURES, 2022, 29 (25) : 4582 - 4598
  • [26] Delamination in GLARE laminates under low velocity impact
    Kakati, Sasanka
    Chakraborty, D.
    COMPOSITE STRUCTURES, 2020, 240
  • [27] An experimental investigation on the effect of incorporating graphene nanoplatelets on the low-velocity impact behavior of fiber metal laminates
    Fathi, Azadeh
    Liaghat, Gholamhossein
    Sabouri, Hadi
    THIN-WALLED STRUCTURES, 2021, 167
  • [28] Grid-Characteristic Numerical Method for Low-Velocity Impact Testing of Fiber-Metal Laminates
    Beklemysheva K.A.
    Vasyukov A.V.
    Kazakov A.O.
    Petrov I.B.
    Lobachevskii Journal of Mathematics, 2018, 39 (7) : 874 - 883
  • [29] Experimental investigation on distance effects in repeated low velocity impact on fiber-metal laminates
    Tooski, M. Yarmohammad
    Alderliesten, R. C.
    Ghajar, R.
    Khalili, S. M. R.
    COMPOSITE STRUCTURES, 2013, 99 : 31 - 40
  • [30] Low-velocity impact perforation response of titanium/composite laminates: analytical and experimental investigation
    Sharma, Ankush
    Ramachandran, Velmurugan
    MECHANICS BASED DESIGN OF STRUCTURES AND MACHINES, 2023, 51 (09) : 5179 - 5212