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Solidification mechanism and microstructure evolution of Al2O3-ZrO2 ceramic coating prepared by combustion synthesis and thermal explosion spraying

机译:通过燃烧合成和热爆炸喷涂制备Al2O3-ZrO2陶瓷涂层的凝固机理和微观结构演化

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摘要

The solidification mechanism and microstructure of the hypoeutectic Al2O3-ZrO2 (Al2O3:72 mol%) ultra-fined ceramic coating prepared by combustion synthesis and rapid plate cooling method were analyzed by the heat transfer process and dynamic characteristics. The rapid solidification process inhibited the transformation from the t-ZrO2 to m-ZrO2 at low temperatures. The growth rate of the solid-liquid interface to form the amorphous and nano-crystalline Al2O3-ZrO2 was about 65.7 mm/s and 13.7 mm/s, respectively. The mechanism formation of both the amorphous and nano-crystalline areas were analyzed using rapid solidification models. When the growth rate reduced to about 8.23 mm/s, large quantities of nanosized eutectic structures was identified by SEM in the pseudo-eutectic area. The interphase spacing of the eutectic structures was 40-100 nm. In addition, some typical divorced eutectic structures appeared at this area. After that, micron dendrites (0.2-0.6 gm) took the main part when the growth rate decreased to about 3.67 mm/s for such a hypoeutectic Al2O3-ZrO2 binary system. The nano-crystalline area showed the highest nanohardness (22 GPa). This paper may provide new guidance to prepare high performance Al2O3-ZrO2 ceramics both in experiment and theory.
机译:通过燃烧合成和快速板冷却方法制备的低抗胶型Al2O3-ZrO2(Al 2 O 3:72mol%)超罚陶瓷涂层的凝固机理和微观结构进行了传热过程和动力学特性。快速凝固方法在低温下抑制从T-ZrO2到M-ZrO2的转化。形成无定形和纳米结晶Al 2 O 3-ZrO 2的固液界面的生长速率分别为约65.7mm / s和13.7mm / s。使用快速凝固模型分析了无定形和纳米结晶区域的机理形成。当增长率降至约8.23mm / s时,伪共晶区域中的SEM鉴定大量的纳米共晶结构。共晶结构的相位间距为40-100nm。此外,在该地区出现了一些典型的离婚共晶结构。之后,当增长速率降至约3.67mm / s时,微米枝晶(0.2-0.6克)均为此类低屈炼Al2O3-ZrO2二元体系的生长速率。纳米结晶区域显示出最高的纳米术(22GPa)。本文可提供新的指导,用于在实验和理论中制备高性能Al2O3-ZrO2陶瓷。

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