An experimental investigation on the low-velocity impact performance of the CFRP filled with nanoclay

被引:34
|
作者
Fakhreddini-Najafabadi, Sajjad [1 ]
Torabi, Mahdi [1 ]
Taheri-Behrooz, Fathollah [1 ]
机构
[1] Iran Univ Sci & Technol, Sch Mech Engn, Tehran 1684613114, Iran
基金
美国国家科学基金会;
关键词
Impact behavior; Nanoclay; Solution blending; Nanocomposite; CFRP; FE-SEM; COMPRESSION; COMPOSITES; DAMAGE; RESISTANCE; STRENGTH; BEHAVIOR; FIBERS;
D O I
10.1016/j.ast.2021.106858
中图分类号
V [航空、航天];
学科分类号
08 ; 0825 ;
摘要
In this study, the effect of the commercial nanoclay Cloisite (R) 20A on the impact response of the carbon fiber reinforced polymers was investigated using a low-velocity drop-weight impact machine under three impact energy levels of 10 J, 15 J, and 20 J. Contrary to other studies and for more improvement of the properties, clay nanoparticles were dispersed in the resin through solution blending methodology, and laminate samples were fabricated by vacuum infusion process. The optimal percentage of nanoclay was determined by tensile and flexural tests on the epoxy samples containing various nanoclay contents (0.20.8 wt.%). For a deeper understanding of the damaged nanocomposites, force-time, force-displacement, and energy-time responses were analyzed. Finally, the influence of nanoclay incorporation by solution blending method and the impact-induced damages were explored by measuring the permanent indentation, radiographic analysis, optical and field emission scanning electron microscopy. Addition of 0.2 wt.% Cloisite (R) 20A led to a significant increase in the maximum impact force (up to 25.7%), a reduction of the absorbed energy (up to -50.25%), and a decrease in the maximum displacement (up to -29.08%). Moreover, the permanent indentation and the delamination area were significantly decremented compared to the other studies using direct dispersion to disperse nanoclay in the resin matrix. Furthermore, it was revealed that the addition of nanoclay resulted in the transition of the failure mode of carbon fiber reinforced polymer during low-velocity impact from delamination to matrix cracking. (c) 2021 Elsevier Masson SAS. All rights reserved.
引用
收藏
页数:16
相关论文
共 50 条
  • [21] Experimental evaluation of the low-velocity impact damage resistance of CFRP tubes with integrated rubber layer
    Stelldinger, E.
    Kuehhorn, A.
    Kober, M.
    COMPOSITE STRUCTURES, 2016, 139 : 30 - 35
  • [22] Experimental and numerical analysis of low-velocity impact damage of CFRP laminates with rubber protective layer
    Li, Ximing
    Liang, Biao
    Liu, Ping
    Cheng, Hui
    Cao, Sipeng
    Zhang, Kaifu
    COMPOSITE STRUCTURES, 2022, 300
  • [23] Experimental and computational study of the damage process in CFRP composite beams under low-velocity impact
    Topac, O. Tanay
    Gozluklu, Burak
    Gurses, Ercan
    Coker, Demirkan
    COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING, 2017, 92 : 167 - 182
  • [24] Experimental investigation of stitched laminates subjected to low-velocity impact and compression after impact
    Mao, Chunjian
    Xu, Xiwu
    Zheng, Da
    Fuhe Cailiao Xuebao/Acta Materiae Compositae Sinica, 2012, 29 (02): : 160 - 166
  • [25] Experimental and numerical investigation of low-velocity impact behavior and failure mode of shear deficient RC beam strengthened with CFRP strips
    Caliskan, Ozlem
    Aras, Murat
    Yilmaz, Tolga
    Anil, Ozgur
    STRUCTURAL CONCRETE, 2024,
  • [26] Low-velocity impact performance of orthogonal grid reinforced CFRP-foam sandwich structure
    Lv, Hangyu
    Shi, Shanshan
    Chen, Bingzhi
    Liu, Ziping
    THIN-WALLED STRUCTURES, 2023, 193
  • [27] Modelling of low-velocity impact and compression after impact of CFRP at elevated temperatures
    Koerbelin, Johann
    Junge, Nilas
    Fiedler, Bodo
    COMPOSITES PART A-APPLIED SCIENCE AND MANUFACTURING, 2021, 147
  • [28] Experimental Investigation into the Low-velocity Impact Behavior of Thick and Thin Laminated Composites
    R. Gunes
    J. Al-Hraishawi
    Mechanics of Composite Materials, 2022, 58 : 747 - 760
  • [29] Low-velocity impact resistance of aluminium glass laminates - Experimental and numerical investigation
    Bienias, Jaroslaw
    Jakubczak, Patryk
    Dadej, Konrad
    COMPOSITE STRUCTURES, 2016, 152 : 339 - 348
  • [30] Experimental Investigation into the Low-velocity Impact Behavior of Thick and Thin Laminated Composites
    Gunes, R.
    Al-Hraishawi, J.
    MECHANICS OF COMPOSITE MATERIALS, 2022, 58 (05) : 747 - 760