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In situ experimental investigation on the out-plane damage evolution of 3D woven carbon-fiber reinforced composites

机译:3D机织碳纤维增强复合材料平面损伤演化的原位实验研究

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摘要

The damage evolution study on 3D woven carbon-fiber reinforced composites has always been a challenge to the research community. In this paper, a new in situ experimental method is proposed to realize the non-destructive observation of the failure process of 3D woven carbon-fiber reinforced composites. Synchrotron radiation computer tomography (SRCT), an in situ load frame and new-style specimens are integrated. With the method, the 3D crack initiation and propagation can be continuously recorded by the SRCT scanner. Through analyzing the experimental results, the out-plane failure mechanism under tension and shear loads is found. Particularly, it is shown that the interface property is the leading factor affecting out-plane strengths. Moreover, the effect of braiding angle on the out-plane strengths in different directions is discussed. According to the failure modes, it can be concluded that with the increasing of the braiding angle, the out-plane tension strength will increase but the out-plane shear strength will decrease. The proposed in situ experimental method and the above findings are significant to calibration of failure prediction model and the novel design of woven composites.
机译:3D编织碳纤维增强复合材料的损伤演化研究一直是研究界的挑战。本文提出了一种新的原位实验方法,以实现对3D机织碳纤维增强复合材料破坏过程的无损观察。同步辐射计算机断层扫描(SRCT),现场载荷框架和新型标本被集成在一起。使用该方法,可以通过SRCT扫描仪连续记录3D裂纹的萌生和扩展。通过对实验结果的分析,发现了在拉伸和剪切载荷作用下的面外破坏机理。特别地,表明界面性质是影响平面外强度的主要因素。此外,讨论了编织角度对不同方向的面外强度的影响。根据破坏模式,可以得出结论,随着编织角的增加,面外抗拉强度会增加,而面外抗剪强度会降低。所提出的原位实验方法和上述发现对失效预测模型的校准和机织复合材料的新颖设计具有重要意义。

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