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Effect of SiC Content on the Ablation and Oxidation Behavior of ZrB2-Based Ultra High Temperature Ceramic Composites

机译:SiC含量对ZrB2基超高温陶瓷复合材料烧蚀和氧化行为的影响

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摘要

The ablation and oxidation of ZrB2-based ultra high temperature ceramic (UHTC) composites containing 10%, 15% and 30% v/v SiC were tested under different heat fluxes in a high frequency plasma wind tunnel. Performance was significantly affected by the surface temperature, which was strongly dependent on the composition. Composites containing 10% SiC showed the highest surface temperature (>2300 °C) and underwent a marked degradation under both conditions. In contrast, composites with 30% SiC exhibited the lowest surface temperature (<2000 °C) and demonstrated excellent ablation resistance. The surface temperature of UHTCs in aerothermal testing was closely associated with the dynamic evolution of the surface and bulk oxide properties, especially for the change in chemical composition on the exposed surface, which was strongly dependent on the material composition and testing parameters (i.e., heat flux, enthalpy, pressure and test time), and in turn affected its oxidation performance.
机译:在高频等离子体风洞中,在不同热通量下测试了含10%,15%和30%v / v SiC的ZrB2基超高温陶瓷(UHTC)复合材料的烧蚀和氧化。性能受到表面温度的显着影响,而表面温度在很大程度上取决于组成。含有10%SiC的复合材料显示出最高的表面温度(> 2300°C),并且在两种条件下均发生了明显的降解。相比之下,具有30%SiC的复合材料表现出最低的表面温度(<2000°C)并显示出优异的耐烧蚀性。 UHTC在空气热测试中的表面温度与表面和本体氧化物的动态演变密切相关,尤其是暴露表面化学成分的变化,这在很大程度上取决于材料成分和测试参数(即热量)。通量,焓,压力和测试时间),进而影响其氧化性能。

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