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Microscopic study of failure mechanisms in infiltrated carbon fiber felts

机译:浸润碳纤维毡失效机理的显微研究

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摘要

Failure mechanisms in infiltrated carbon fiber felts have been studied by optical light microscopy, transmission electron microscopy and scanning electron microscopy combined with mechanical testing experiments. A model is presented which describes crack generation and propagation at layer-layer and fiber-matrix interfaces as well as within matrix carbon layers with different textures. Intensive cracking occurs within high- and less frequently in medium- and low-textured pyrolytic carbon layers. In particular, fracture does not occur directly at the fiber-matrix interface but within the low-textured matrix layer deposited on the fiber. Crack deflection in interface regions between layers with different textures, crack deflection along boundaries of columnar grains in high-textured layers and at interfaces between polyhedral nanoparticles, and finally crack bridging within high-textured lamellae are cooperative failure mechanisms contributing to the toughness enhancement.
机译:采用光学显微镜、透射电子显微镜和扫描电子显微镜结合力学试验研究了渗入碳纤维毡的破坏机理。给出了一个模型,描述了层-层和纤维-基体界面以及具有不同纹理的基质碳层内的裂纹产生和扩展。在中质地和低质地的热解碳层中,高和低纹理的热解碳层中发生密集开裂,频率较低。特别是,断裂不直接发生在纤维-基体界面,而是发生在沉积在纤维上的低纹理基质层内。不同织构层间界面区域的裂纹挠度、高织构层柱状晶粒边界和多面体纳米颗粒界面处的裂纹挠度,以及高织构薄片内部的裂纹桥接是促进韧性增强的协同破坏机制。

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