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Microscale intrinsic properties of hybrid unidirectional/woven composite laminates: Part I experimental tests

机译:混合式单向/编织复合材料层压板的微观性质性质:第一部分实验测试

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摘要

Understanding of the failure of composites is critical for evaluating their safety and reliability when they are in service. In this research, a combined image analysis technique using computed microtomography (micro-CT) and scanning electron microscopy (SEM) is proposed to study the microstructures, damage and failure of a hybrid unidirectional/woven composite laminate (HUWCL). Micro-CT is used to extract the 3D microscale morphology and identify the internal failure behaviours of the HUWCL. A series of material parameters, such as fiber volume fraction, void ratio and layer mode, are acquired by the statistical analysis of the micro-CT images. In addition, microscale surface damage and failure mechanism of woven and unidirectional (UD) laminae are further investigated by SEM. It is found that the matrix damage around the interface always occurs in both woven and unidirectional (UD) laminae, and distinct delamination is found between the UD laminae and the woven composites. The study shows a great potential of combining micro-CT with SEM in revealing the local damage and intrinsic failure mechanism in HUWCLs at microscale.
机译:了解复合材料的失败对于评估他们在服务时的安全性和可靠性至关重要。在该研究中,提出了一种使用计算的微微图(MICRO-CT)和扫描电子显微镜(SEM)的组合图像分析技术,以研究杂种单向/编织复合层压体(HUWCL)的微观结构,损伤和失效。微型CT用于提取3D微观形态并识别HUWCL的内部故障行为。通过微CT图像的统计分析来获得一系列材料参数,例如纤维体积分数,空隙率和层模式。另外,通过SEM进一步研究编织和单向(UD)薄膜的微观表面损伤和失效机制。发现界面周围的基质损伤总是发生在织造和单向(UD)薄膜中,并且在UD薄层和织造复合材料之间发现了不同的分层。该研究表明,与SEM结合微型CT的巨大潜力,揭示了Micross尺寸HuWCLS中的局部损伤和内在故障机制。

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