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Microstructure and ablation properties of C/C-Zr-Si-0 composites prepared by carbothermal reduction of hydrothermal codeposited oxides

机译:碳热还原水热共沉积氧化物制备的C / C-Zr-Si-0复合材料的显微组织和烧蚀性能

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C/C-Zr-Si-O composites were prepared by carbothermal reduction of hydrothermal co-deposited ZrO2, SiO2, and C. The bulk density of composites reached 1.71 g/cm(3) with 8 cycles of co-deposition. The matrix of the composites includes ZrC, SiC, ZrO2, and SiO2 with fine grain size (300-500 nm) and homogeneous distribution. The mass and linear ablation rate of C/C-Zr-Si-O composites were 0.112 mg/cm(2).s and 0.46 mu m/s, respectively, under a plasma flame for 120 s. The attractive ablation resistance of the composites resulted from its unique structure, which tends to form a continuous ZrO2-SiO2 glass layer in the ablation center, a layer of SiO2-ZrO2 bubbles in the transition region, and fluffy SiO2 nanowires layer in the heat-affected region. These ablation layers were barriers to restrain the diffusion of oxidative gas and heat. The C/C-Zr-Si-O composites provide an alternative ceramics system with attractive ablation resistance, while carbothermal reduction of hydrothermal co-deposited oxides is a feasible method for the structural design of carbon fiber reinforced ultra-high temperature ceramic. (C) 2018 Elsevier Ltd. All rights reserved.
机译:C / C-Zr-Si-O复合材料是通过碳热还原水热共沉积的ZrO2,SiO2和C制备的。复合材料的堆积密度达到1.71 g / cm(3),共进行了8个共沉积循环。复合材料的基体包括ZrC,SiC,ZrO2和SiO2,具有细小的晶粒尺寸(300-500 nm)和均匀的分布。 C / C-Zr-Si-O复合材料的质量和线性烧蚀速率分别为等离子火焰120 s,为0.112 mg / cm(2).s和0.46μm/ s。复合材料的吸引力在于其独特的结构,其倾向于在烧蚀中心形成连续的ZrO2-SiO2玻璃层,在过渡区域形成一层SiO2-ZrO2气泡层,并在加热过程中形成蓬松的SiO2纳米线层。受灾地区。这些烧蚀层是限制氧化性气体和热量扩散的障碍。 C / C-Zr-Si-O复合材料提供了一种具有有吸引力的耐烧蚀性的替代陶瓷体系,而碳热还原水热共沉积氧化物是碳纤维增强超高温陶瓷结构设计的可行方法。 (C)2018 Elsevier Ltd.保留所有权利。

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