The Influence of Carbon/Glass/Epoxy Hybrid Interfacial Adhesion on the Mode II Delamination Fracture Toughness

被引:0
|
作者
F. M. Monticeli
H. L. Ornaghi
M. O. H. Cioffi
H. J. C. Voorwald
机构
[1] São Paulo State University (Unesp),Department of Materials and Technology
[2] School of Engineering,undefined
[3] Federal University for Latin American Integration (UNILA),undefined
来源
Mechanics of Composite Materials | 2022年 / 58卷
关键词
hybrid composite; interfacial strength; delamination; dynamic mechanical thermal analysis;
D O I
暂无
中图分类号
学科分类号
摘要
The incorporation of two different reinforcements in the same matrix introduces distinct physical, mechanical, and chemical characteristics into it, which need to be evaluated. In addition, the interfacial adhesion also plays a significant role in the mechanical delamination performance. This study aims to analyze the carbon/glass/ epoxy hybrid interfacial adhesion behavior through a DMA analysis and the mode II delamination toughness regarding the application possibilities of hybrid composites. Hybrid composites feature a strong interface adhesion and a high hindrance of the motion molecular chain, which is caused by the chemical adhesion of glass/carbon/epoxy through the organosilane promotors of glass fibers. The inhomogeneous load distribution, combined with the restricted molecular motion and synergetic combination of reinforcement stiffness, induces a change in crack propagation (a tortuous path) which is characteristic of a high interfacial adhesion. Hybrid interfaces also improve the mechanical behavior of laminates in shear, tending to increase the strain energy release ratio for mode II delamination, compared with that of non-hybrid laminates.
引用
收藏
页码:237 / 248
页数:11
相关论文
共 50 条
  • [1] The Influence of Carbon/Glass/Epoxy Hybrid Interfacial Adhesion on the Mode II Delamination Fracture Toughness
    Monticeli, F. M.
    Ornaghi, H. L., Jr.
    Cioffi, M. O. H.
    Voorwald, H. J. C.
    MECHANICS OF COMPOSITE MATERIALS, 2022, 58 (02) : 237 - 248
  • [2] MODE II INTERLAMINAR FRACTURE TOUGHNESS OF FLAX AND GLASS EPOXY HYBRID COMPOSITES
    Bougherara, Habiba
    Ekeoseye, Wilfred Stephen
    7TH INTERNATIONAL CONFERENCE INTEGRITY-RELIABILITY-FAILURE (IRF2020), 2020, : 245 - 246
  • [3] Mode I and mode II delamination of carbon/glass/epoxy hybrid composite: A statistics-based analysis
    Monticeli, Francisco Maciel
    Pitanga, Midori Yoshikawa
    Cioffi, Maria Odila Hilario
    Voorwald, Herman Jacobus Cornelis
    POLYMER COMPOSITES, 2021, 42 (08) : 3857 - 3869
  • [4] Mode II delamination of carbon-glass fiber/epoxy hybrid composite under fatigue loading
    Monticeli, Francisco Maciel
    Cioffi, Maria Odila Hilario
    Voorwald, Herman Jacobus Cornelis
    INTERNATIONAL JOURNAL OF FATIGUE, 2022, 154
  • [5] Mode-II interlaminar fracture toughness of carbon/epoxy laminates
    Saidpour, H
    Barikani, M
    Sezen, M
    IRANIAN POLYMER JOURNAL, 2003, 12 (05) : 389 - 400
  • [6] Mode II Interlaminar Fracture Toughness of Flax/Glass/Epoxy Hybrid Composite Materials: An Experimental and Numerical Study
    Ekeoseye, Wilfred Stephen
    Kolasangiani, Kamal
    Oguamanam, Donatus C. D.
    Bougherara, Habiba
    JOURNAL OF NATURAL FIBERS, 2022, 19 (11) : 4286 - 4300
  • [7] The effect of plasma treatment on the mode II interlaminar fracture toughness of Glass/Epoxy laminates
    Ahangar, Mahdy
    Saeedifar, Milad
    THEORETICAL AND APPLIED FRACTURE MECHANICS, 2023, 127
  • [8] Mode II delamination toughness of stitched graphite/epoxy textile composites
    Sankar, BV
    Sharma, SK
    COMPOSITES SCIENCE AND TECHNOLOGY, 1997, 57 (07) : 729 - 737
  • [9] Dynamic mode II interlaminar fracture toughness of electrically modified carbon/epoxy composites
    Shamchi, Sahand P.
    de Moura, Marcelo F. S. F.
    Zhao, Zhongjie
    Yi, Xiaosu
    Moreira, Pedro M. G. P.
    INTERNATIONAL JOURNAL OF IMPACT ENGINEERING, 2022, 159
  • [10] Influence of sprayed multi-walled carbon nanotubes on mode I and mode II interlaminar fracture toughness of carbon fiber/epoxy composites
    Rodriguez-Gonzalez, J. A.
    Rubio-Gonzalez, C.
    ADVANCED COMPOSITE MATERIALS, 2019, 28 (sup1) : 19 - 36