Out-of-plane Properties and Failure Mechanism of Composite Laminates Reinforced With Carbon Z-pins

被引:0
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作者
Yuchi Liu
Licheng Cai
Huiming Ding
Qiang Xu
机构
[1] Zhejiang University,State Key Laboratory of Fluid Power and Mechatronic System, School of Mechanical Engineering
[2] Zhejiang University,Key Laboratory of Advanced Manufacturing Technology of Zhejiang Province, School of Mechanical Engineering
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关键词
Z-pinned laminate; Mechanical properties; Tensile pull-out strengths; Delamination resistance; Failure mechanism;
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摘要
This paper investigated the effects of Z-pin content and insertion angle on the deformation and failure of quasi-isotropic laminates in the thickness direction by tensile pull-out tests and out-of-plane tensile tests. Local defect characteristics of the composite laminates when carbon fiber pin needle arrays are inserted were reproduced to analyze the Z-pin pull-out stresses and failure mechanism. Experimental results demonstrate that with the increase of Z-pin insertion angle, the maximum pull-out force and the maximum friction force which reflects the strength between Z-pins and matrix are reduced and interfacial debonding gradually dominated the failure. Z-pin insertion has little effect on the global failure mode of laminates. Compared with the unpinned laminates, the out-of-plane tensile strength of composite laminates decreased by 20.2% when the Z-pin insertion density is 1.4%. FEA results demonstrate that the decrease can be attributed to the resin-rich zone defect caused by Z-pin insertion and was not significantly associated with local in-plane fibre buckling.
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页码:379 / 397
页数:18
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