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首页> 外文期刊>Journal of the European Ceramic Society >Laser ablation behavior of SiHfC-based ceramics prepared from a single-source precursor: Effects of Hf-incorporation into SiC
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Laser ablation behavior of SiHfC-based ceramics prepared from a single-source precursor: Effects of Hf-incorporation into SiC

机译:由单源前体制备的SiHFc基陶瓷激光消融行为:HF掺入分为SIC的影响

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摘要

Laser ablation test of SiHfC-based ceramic nanocomposites as well as ceramic matrix composites (CMCs) was conducted by exposure to a CO2 laser beam in air. Laser ablation behavior and possible degradation mechanisms of dense monolithic HfC/SiC ceramic nanocomposites as well as of C-f/SiHfC CMCs were investigated. Dense SiC monoliths and C-f/SiC CMCs were exposed to same laser ablation conditions and considered as reference materials. The evolution of microstructure and chemical/phase composition of the studied ceramics was addressed by scanning electron microscopy (SEM) combined with energy dispersive X-ray spectroscopy (EDX) as well as by X-ray diffraction. The results reveal that from the center to the edge of the damaged region of the materials three sections with different surface morphologies and ablation mechanisms are identified. The comparation between the SiC-based monoliths and CMCs with and without Hf demonstrates the positive effects of Hf-incorporation on their laser ablation resistance.
机译:通过在空气中暴露于CO 2激光束进行SiHFc基陶瓷纳米复合材料以及陶瓷基复合材料(CMC)的激光烧蚀试验。研究了激光消融行为和致密整体HFC / SiC陶瓷纳米复合材料以及C-F / SiHFC CMC的可能降解机制。将致密的SiC单片和C-F / SiC CMC暴露于相同的激光烧蚀条件并被认为是参考材料。通过扫描电子显微镜(SEM)与能量分散X射线光谱(EDX)以及X射线衍射来解决研究陶瓷的微观结构和化学/相组合物的演变。结果表明,从中心到损伤区域的边缘,鉴定了不同表面形态和消融机制的三个部分。 SiC基整岩和CMC之间的比较,具有和不含HF,证明了HF掺入对其激光消融抗性的正效应。

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