Mode I Fatigue of Fibre Reinforced Polymeric Composites: A Review

Author:

Gao Xingzhong,Umair Muhammad,Nawab Yasir,Latif Zeeshan,Ahmad Sheraz,Siddique AmnaORCID,Yang Hongyue

Abstract

Composites are macroscopic combinations of chemically dissimilar materials preferred for new high-tech applications where mechanical performance is an area of interest. Mechanical apprehensions chiefly include tensile, creep, and fatigue loadings; each loading comprises different modes. Fatigue is cyclic loading correlated with stress amplitude and the number of cycles while defining the performance of a material. Composite materials are subject to various modes of fatigue loading during service life. Such loadings cause micro invisible to severe visible damage affecting the material’s performance. Mode I fatigue crack propagates via opening lamina governing a visible tear. Recently, there has been an increasing concern about finding new ways to reduce delamination failure, a life-reducing aspect of composites. This review focuses on mode I fatigue behaviours of various preforms and factors determining failures considering different reinforcements with respect to fibres and matrix failures. Numerical modelling methods for life prediction of composites while subjected to fatigue loading are reviewed. Testing techniques used to verify the fatigue performance of composite under mode I load are also given. Approaches for composites’ life enhancement against mode I fatigue loading have also been summarized, which could aid in developing a well-rounded understanding of mode I fatigue behaviours of composites and thus help engineers to design composites with higher interlaminar strength.

Funder

Natural Science basic Research Program of Shaanxi Province

Research Fund for the Doctoral Program of Xi’an Polytechnic University

Beilin Science and Technology Planning Project

Open Project Program of Ministry of Education Key Laboratory for Advanced Textile Composite Materials

Xi’an Polytechnic University

Publisher

MDPI AG

Subject

Polymers and Plastics,General Chemistry

Reference118 articles.

1. Siddique, A., Sun, B., and Gu, B. Structural Influences of Two-Dimensional and Three-Dimensional Carbon/Epoxy Composites on Mode I Fracture Toughness Behaviors with Rate Effects on Damage Evolution. J. Ind. Text., 2021.

2. Finite element modeling on fracture toughness of 3D angle-interlock woven carbon/epoxy composites at microstructure level;Siddique;Mech. Adv. Mater. Struct.,2021

3. Effect of braiding angle on dynamic mechanical properties of 3-D braided rectangular composites under multiple impact compressions;Gao;J. Compos. Mater.,2019

4. Mode I fracture toughness of fiber-reinforced polymer composites: A review;Siddique;J. Ind. Text.,2021

5. Siddique, A., Iqbal, Z., Nawab, Y., and Shaker, K. A review of joining techniques for thermoplastic composite materials. J. Thermoplast. Compos. Mater., 2022.

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