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Progressive damage analysis of three-dimensional braided composites under flexural load by micro-CT and acoustic emission

机译:三维编织复合材料在挠曲载荷下的微CT和声发射渐进损伤分析

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摘要

The effect of the load-bearing direction on the progressive bending damage of three-dimensional (3D) fivedirectional braided composites remains to be further discussed. To address this issue, two kind of samples, longitudinal and transverse, are experimentally tested three-point bending method. Simultaneously, the damage evolution behaviors are monitored by acoustic emission (AE) technology. Furthermore, X-ray micro-computed tomography (micro-CT) techniques are employed to identify the internal damage initiation/evolution and distribution characteristics of 3D braided composites. The microscopic damage morphology observed by micro-CT can be well correlated with the variation characteristics of the collected AE parameters. Through analyzing the experimental results, the damage of the longitudinally load-bearing specimen is mainly caused by the damage of the fiber and yarn, while the damage forms of transverse load-bearing materials are mainly fiber slip, interface debonding, matrix cracking and fiber fracture. Since the axial yarns and braided fibers of the longitudinal loadbearing specimens have played a supporting role, the bearing performance and the deformation resistance are superior to the transverse load-bearing material. The proposed combination of AE and micro-CT can provide a reference for monitoring the damage process and predicting the failure.
机译:承载方向对三维(3D)五向编织复合材料渐进弯曲损伤的影响仍有待进一步讨论。为了解决这个问题,纵向和横向两种样品都经过了三点弯曲法的实验测试。同时,通过声发射(AE)技术监控损伤演化行为。此外,X射线微计算机断层扫描(micro-CT)技术被用于识别3D编织复合材料的内部损伤引发/演化和分布特征。通过微CT观察到的微观损伤形态可以与所收集的AE参数的变化特征良好相关。通过对实验结果的分析,纵向承压试样的损伤主要是纤维和纱线的损伤,而横向承压材料的损伤形式主要是纤维滑移,界面脱粘,基体开裂和纤维断裂。 。由于纵向承压试样的轴向纱线和编织纤维起到了支撑作用,因此其承载性能和抗变形性优于横向承压材料。 AE和micro-CT的建议组合可以为监视损坏过程和预测故障提供参考。

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