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Microstructural characteristics of Al2O3-based refractory containing ZrO2 induced by CO2 laser melting

机译:CO2激光熔融诱导的含ZrO2的Al2O3基耐火材料的微观结构特征

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In this study, an Al-2-O-3-based refractory containing ZrO2 was treated by a CO2 laser surface melting aiming at improving its surface density and modifying the corresponding microstructure, which were considered to be important factors influencing the erosion resistance of refractory materials. The microstructure and phase structure characteristics of the refractory induced by the laser beam have been investigated by scanning transmission microscopy incorporating energy-dispersive X-ray technique and X-ray diffraction analysis. The laser scanning velocity had a significant influence on the microquality of the laser-molten tracks. Laser treatment at a lower scanning velocity of 4 mm s(-1) could result in severe evaporation to some lower evaporating point phases, which could result in more cracks and pores, rougher surface. Increasing the scanning velocity up to 12 mm s(-1) alleviated the evaporation phenomenon and reduced the drawbacks above to a great extent. After laser surface melting, the microstructure was changed into a fine and dense hypoeutectic structure and the phase m-ZrO2 was uniformly dispersed into the dendrite instead of the non-uniform particle-like shape in the as-received refractory, the dominant phase was changed from Al6Si2O13 to alpha-Al2O3 while a small amount of high temperature phase c-ZrO2 was retained at the room temperature. (C) 2003 Elsevier B.V. All rights reserved. [References: 10]
机译:在这项研究中,采用ZoO2的Al-2-O-3-基耐火材料通过CO2激光表面熔化处理,旨在提高其表面密度并改变相应的微观结构,这被认为是影响耐火材料耐蚀性的重要因素。材料。通过结合能量色散X射线技术和X射线衍射分析的扫描透射显微镜研究了激光束诱导的耐火材料的微观结构和相结构特征。激光扫描速度对激光熔模轨迹的微观质量有重大影响。以较低的4 mm s(-1)扫描速度进行激光处理可能会导致严重蒸发到一些较低的蒸发点相,这可能会导致更多的裂纹和孔隙,更粗糙的表面。将扫描速度提高到12 mm s(-1)可以缓解蒸发现象,并在很大程度上减少了上述缺点。激光表面熔化后,显微组织变为细密致密的亚共晶组织,m-ZrO2相均匀地分散在枝晶中,而不是所接收的耐火材料中的不均匀颗粒状形状,主相发生了变化。从Al6Si2O13到α-Al2O3,同时在室温下保留了少量高温相c-ZrO2。 (C)2003 Elsevier B.V.保留所有权利。 [参考:10]

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