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首页> 外文期刊>CERAMICS INTERNATIONAL >High-temperature interactions of desert sand CMAS glass with yttrium disilicate environmental barrier coating material
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High-temperature interactions of desert sand CMAS glass with yttrium disilicate environmental barrier coating material

机译:沙漠砂CMA玻璃高温相互作用,钇静止环境屏障涂层材料

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摘要

A calcium-magnesium aluminosilicate (CMAS) glass was prepared by melting a sample of desert sand to evaluate the high-temperature interactions between molten CMAS and yttrium disilicate (Y2Si2O7), an environmental barrier coating (EBC) candidate material. Cold-pressed pellets of 80 wt% Y2Si2O7 powder and 20 wt% CMAS glass powder were heat treated at 1200 degrees C, 1300 degrees C, 1400 degrees C and 1500 degrees C for 20 h in air. The resulting phases were evaluated using powder X-ray diffraction. In the second set of experiments, free standing hot-pressed Y2Si2O7 substrates with cylindrical wells were filled with CMAS powder to a loading of similar to 35 mg/cm(2) and heat treated in air at 1200 degrees C, 1300 degrees C, 1400 degrees C and 1500 degrees C for 20 h. Scanning electron microscopy, energy-dispersive spectroscopy and electron microprobe analysis were used to evaluate the microstructure and phase compositions of specimens after heat treatment. An oxyapatite silicate (Ca2Y8(SiO4)(6)O-2) phase was identified in all specimens after CMAS exposure regardless of heat treatment temperature. Apatite appeared to form by dissolution of Y2Si2O7 into molten CMAS, reacting with CaO in the melt according to the reaction 4Y(2)Si(2)O(7) + 2CaO - Ca2Y8(SiO4)(6)O-2 + 2SiO(2), and followed by precipitation of the apatite phase.
机译:通过熔化沙漠砂样品来制备铝硅酸钙(CMAS)玻璃,以评估熔融CMAS和钇峰(Y2SI2O7)之间的高温相互作用,环境阻隔涂层(EBC)候选材料。 80wt%Y2SI2O7粉末和20wt%CMAS玻璃粉末的冷压制粒料在1300℃,1300℃,1400℃和1500℃下热处理20小时。使用粉末X射线衍射评价所得相。在第二组实验中,具有圆柱形孔的自由驻留的热压Y2Si2O7基板用Cmas粉末填充到类似于35mg / cm(2)的载荷,并在1200℃下在空气中处理,1300℃,1400 20小时的摄影和1500摄氏度。扫描电子显微镜,能量分散光谱和电子微探测分析用于评估热处理后试样的微观结构和相组合物。在CMA暴露后在所有标本中鉴定氧铝磷酸盐硅酸盐(Ca2Y8(SiO 4)(6)O-2)相,无论热处理温度如何。磷灰石通过溶解Y2Si2O7溶解到熔融CMA中,根据反应4Y(2)Si(2)O(7)+ 2CaO-&Gt,与熔体中的CaO反应。 Ca2Y8(SiO 4)(6)O-2 + 2siO(2),然后沉淀磷灰石相。

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