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首页> 外文期刊>Ceramic Engineering and Science Proceedings >NANOSTRUCTURED ALUMINA COATINGS FORMED BY A DISSOLUTION/PRECIPITATION PROCESS USING ALN POWDER HYDROLYSIS
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NANOSTRUCTURED ALUMINA COATINGS FORMED BY A DISSOLUTION/PRECIPITATION PROCESS USING ALN POWDER HYDROLYSIS

机译:通过Aln粉末水解通过溶解/沉淀过程形成的纳米结构氧化铝涂层

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摘要

The hydrolysis of aluminum nitride (ALN) powder was exploited in the preparation of nanostructured coatings on a sintered yttria-stabilized tetragonal zirconia (Y-TZP) ceramic substrate, with the aim to enhance the adhesion of dental cements to the ceramic core structure. The nanocrystalline coating formed using this method consists of γ-AlOOH (boehmite) in the form of 6-nm-thick and 240-nm-long interconnected lamellas. During a subsequent heat treatment in the temperature range from 600℃ to 1200℃ this coating was transformed to various transient aluminas without any noticeable change in the morphology, but its bonding to the substrate was significantly improved. By varying the precipitating conditions, such as the temperature and the time, it was also possible to synthesize coatings differing in composition and morphology, resulting in nano- or micron-sized particles. This nanosized alumina coating has the potential to improve the adhesion of composite dental cements to the sintered Y-TZP ceramic
机译:氮化铝(ALN)粉末的水解被用于在氧化钇稳定的四方氧化锆(Y-TZP)陶瓷基体上制备纳米结构涂层,目的是增强牙科水泥对陶瓷芯结构的附着力。使用此方法形成的纳米晶体涂层由厚度为6纳米且长度为240纳米的互连薄片形式的γ-AlOOH(勃姆石)组成。在随后的600℃至1200℃的温度范围内进行热处理时,该涂层转变为各种瞬态氧化铝,形态无明显变化,但与基材的粘合性得到了显着改善。通过改变沉淀条件,例如温度和时间,还可以合成组成和形态不同的涂层,从而得到纳米或微米大小的颗粒。这种纳米级氧化铝涂层具有改善复合牙科胶粘剂与烧结Y-TZP陶瓷粘合的潜力

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