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Microstructure and Mechanical Properties of Al2O3/Er3Al5O12 Binary Eutectic Ceramic Prepared by Bridgman Method

机译:Bridgman方法制备的Al2O3 / ER3Al5O12二元共晶陶瓷的微观结构和力学性能

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摘要

Directionally solidified Al2O3/Er3Al5O12 (EAG) eutectic ceramic was prepared via vertical Bridgman method with high-frequency induction heating. The effects of the growth rate on the microstructure and mechanical properties of the solidified ceramic were investigated. The experimental results showed that there were no pores or amorphous phases in the directionally solidified Al2O3/EAG eutectic ceramic. Al2O3 phase was embedded in the EAG matrix phase, and the two phases were intertwined with each other to form a typical binary eutectic “hieroglyphic” structure. With the increase of growth rate, the phase size and spacing of the solidified Al2O3/EAG ceramic both decreased, and the growth rate and phase spacing satisfied the λ2v ≈ 60 formula of Jackson-Hunt theory. The cross section microstructure of the solidified ceramic always exhibited an irregular eutectic growth, while the longitudinal section microstructure presented a directional growth. The mechanical properties of the solidified ceramic gradually increased with the increase of growth rate, and the maximum hardness and fracture toughness could reach 21.57 GPa and 2.98 MPa·m1/2 respectively. It was considered that the crack deflection and branching could enhance the toughness of the solidified ceramic effectively.
机译:通过具有高频感应加热的垂直Bridgman方法制备定向凝固的Al 2 O 3 / Er3Al5O12(EAG)共晶陶瓷。研究了生长速率对固化陶瓷微观结构和力学性能的影响。实验结果表明,在定向固化的Al2O3 / EAG共晶陶瓷中没有孔或无定形相。将Al2O3相嵌入EAG基质相中,并且两相彼此交织,以形成典型的二元共晶“象形晶的”结构。随着生长速率的增加,凝固的Al2O3 / EAG陶瓷的相位尺寸和间距都降低,并且生长速率和相间距满足λ2V≈60杰克逊狩猎理论的公式。凝固陶瓷的横截面微观结构总是表现出不规则的共晶生长,而纵向截面微观结构呈现了定向生长。凝固陶瓷的力学性能随着生长速率的增加而逐渐增加,最大硬度和断裂韧性可分别达到21.57GPa和2.98MPa·M1 / 2。据认为,裂缝偏转和支化可以有效地增强固化陶瓷的韧性。

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