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首页> 外文期刊>Journal of the Australasian ceramic society >A study of mechanical properties of alumina-zirconia composite films prepared by a combination of tape casting and solution impregnation method
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A study of mechanical properties of alumina-zirconia composite films prepared by a combination of tape casting and solution impregnation method

机译:力学性能的研究alumina-zirconia复合电影准备的磁带铸造和解决方案浸渍法

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摘要

Zirconia-toughened alumina (ZTA) ceramics are one of the most important engineering ceramics with high bending strength and fracture toughness. ZTA ceramics have found important applications in catalysts, implants, wear resistance tools, and electric circuit substrate. The near net shape method based on impregnation of porous body with desired solution has been used to prepare composites with improved properties. In this paper alumina-zirconia composite thin film has been prepared by a combination of aqueous tape casting and solution impregnation methods to improve sintering behavior and mechanical properties. At first, porous 3 mol% yttria-stabilized zirconia was prepared using aqueous tape casting, followed by impregnation with aluminum nitrate solution. Then, the rheological behavior was studied. The microstructure and phase content of samples were studied by SEM and XRD. Microhardness, nanohardness, Young's modulus, and fracture toughness were measured by Vickers microhardness and nanoindentation methods, respectively. It was found that alumina-zirconia composites with homogeneous distribution of phases and high density can be obtained by solution impregnation method. The mechanical properties of composite thin films prepared by solution impregnation method have been improved compared to those of the composite prepared by tape casting of mixture of alumina and 3YSZ powders.
机译:Zirconia-toughened氧化铝(ZTA)陶瓷最重要的工程陶瓷高抗弯强度和断裂韧性。陶瓷已经发现重要的应用催化剂、植入、耐磨工具和电路衬底。基于多孔体的浸渍的方法被用来准备所需的解决方案复合材料与改进的属性。纸alumina-zirconia复合薄膜是由含水带的结合铸造和浸渍方法的解决方案改善烧结行为和机械属性。yttria-stabilized氧化锆是使用准备的水磁带铸造、浸渍紧随其后硝酸铝溶液。流变行为进行了研究。微观结构和相位样本内容通过SEM和XRD研究。nanohardness、杨氏模量和断裂韧性被维氏显微硬度测量分别和nanoindentation方法。发现alumina-zirconia复合材料均匀分布和高的阶段密度可以通过溶液浸渍方法。薄膜由溶液浸渍方法相比提高了组合由磁带铸造的混合物氧化铝和3 ysz粉末。

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