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Microstructure and mechanical properties of Al2O3/Er3Al5O12 eutectic rods grown by the laser-heated floating zone method

机译:激光加热浮区法生长Al2O3 / Er3Al5O12共晶棒的组织和力学性能

摘要

Eutectic rods of Al2O3-Er3Al5O12 were grown by directional solidification using the laser-heated floating zone method at rates in the range 25-1500mm/h. Their microstructure and mechanical properties (hardness, toughness and strength) were investigated as a function of the growth rate. A homogeneous and interpenetrated microstructure was found in most cases, and interphase spacing decreased with growth rate following the Hunt-Jackson law. Hardness increased slightly as the interphase spacing decreased while toughness was low and independent of the microstructure. The rods presented very high bending strength as a result of the homogeneous microstructure, and their strength increased rapidly as the interphase spacing decreased, reaching a maximum of 2.7GPa for the rods grown at 750mm/h. The bending strength remained constant up to 1300K and decreased above this temperature. The relationship between the microstructure and the mechanical properties was established from the analysis of the microstructure and of the fracture mechanisms. © 2010 Elsevier Ltd.
机译:Al2O3-Er3Al5O12的共晶棒采用激光加热的浮区法通过定向凝固以25-1500mm / h的速率生长。研究了它们的微观结构和机械性能(硬度,韧性和强度)与增长率的关系。在大多数情况下,发现了均匀且互穿的微观结构,并且遵循亨特-杰克逊定律,相间距随着生长速率而减小。硬度随着相间间距的减小而略有增加,而韧性较低且与微观结构无关。这些棒由于均一的微观结构而表现出非常高的弯曲强度,并且随着相间间距的减小它们的强度迅速增加,对于以750mm / h的速度生长的棒,其最大值达到2.7GPa。弯曲强度直到1300K都保持恒定,并在此温度以上降低。通过对组织和断裂机理的分析,建立了组织与力学性能之间的关系。 ©2010爱思唯尔有限公司。

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