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Combustion synthesis and characterisation of lanthanum hexa-aluminate

机译:六铝酸镧的燃烧合成与表征

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Lanthanum hexa-aluminate (LHA) is considered a promising material for thermal barrier coatings for gas turbine applications as well as oxidation resistant coatings for fibres in oxide based ceramic composites. Combustion synthesis has attractive advantages such as simple experimental setup, low cost, short reaction time, energy savings due to exothermic reaction, better control of stoichiometry and fine powder size. The present study involves combustion synthesis of LHA using lanthanum and aluminium nitrates as oxidising precursors, and urea as fuel. The precursor salts were dissolved in a minimum amount of deionised water and the solution was heated in a mantle heater to temperatures of around 300-350 deg C, at which combustion takes place with rapid evolution of gas. The LHA powder was also prepared by a precipitation route for comparative study. The as synthesised powders were calcined at up to 1450 deg C and subjected to X-ray diffraction for phase evolution studies. Product powders were then characterised. The influence of the lanthanum/aluminium molar ratio in the starting composition and the effect of temperature on the formation sequences of lanthanum monoaluminate (LMA) and LHA and on the conversion of LMA to LHA are discussed.
机译:六铝酸镧(LHA)被认为是一种有前途的材料,可用于燃气轮机应用的热障涂层以及氧化物基陶瓷复合材料中纤维的抗氧化涂层。燃烧合成具​​有诱人的优势,例如简单的实验设置,低成本,短反应时间,放热反应可节省能量,更好地控制化学计量和细粉大小。本研究涉及以镧和硝酸铝为氧化前体,以尿素为燃料的LHA燃烧合成。将前体盐溶解在最少量的去离子水中,然后在罩式加热器中将溶液加热至约300-350℃,在此温度下燃烧伴随气体的快速释放而发生。还通过沉淀路线制备了LHA粉末用于比较研究。所合成的粉末在高达1450摄氏度的温度下煅烧,并进行X射线衍射以进行相演化研究。然后表征产物粉末。讨论了镧/铝摩尔比对起始组成的影响以及温度对单铝酸镧(LMA)和LHA形成顺序以及LMA向LHA转化的影响。

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