首页> 外文期刊>Journal of Ceramic Science and Technology >Microstructure and Phase Evolution of Cement-Bonded High-Alumina Refractory Castables for Porous Purging Plugs
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Microstructure and Phase Evolution of Cement-Bonded High-Alumina Refractory Castables for Porous Purging Plugs

机译:多孔吹扫塞水泥粘结高氧化铝耐火材料件的微观结构和相位演化

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摘要

This work addresses the microstructure and phase evolution of four designed high-alumina refractory castables (containing rho-Al2O3 or calcium aluminate cement as a binder source and 0 or 1 wt% microsilica). Various experimental tests (air permeability, linear change rate, apparent porosity, cold modulus of rupture, cold crushing strength, hot modulus of rupture, pore size distribution, X-ray diffraction and scanning electron microscopy) were conducted to characterize the castables. The results show that using cement as the binder has a significant effect on the properties of the refractory castables. The cement-bonded castables exhibited a lower linear shrinkage rate, apparent porosity and air permeability, higher cold modulus of rupture and cold crushing strength, as well as a smaller mean pore size than that of the rho-Al2O3-bonded castables. The results were attributed to the formation of calcium hexaluminate. Some CA(6) was detected inside the pores, which occupied space in the pores and prevented the formation of interconnected pores, while some CA(6) existed outside the pores, which enhanced the densification of the structure and reduced the size of pores. Moreover, the addition of microsilica can facilitate interconnected pore formation in cement-bonded castables, but lower the hot modulus of rupture owing to the formation of low-melting-temperature phase (C(2)AS).
机译:这项工作解决了四种设计的高氧化铝耐火浇注料(含有rhO-Al 2 O 3或铝酸钙水泥作为粘合剂源和0或1wt%Microsilica)的微观结构和相位演化。进行各种实验试验(透气性,线性变化率,表观孔隙率,冷模量,冷碎强度,热破裂模量,孔径分布,X射线衍射和扫描电子显微镜)以表征铸件。结果表明,使用水泥作为粘合剂对耐火件的性质具有显着影响。水泥粘结的碎屑件表现出较低的线性收缩率,表观孔隙率和透气性,较高的浊度和冷碎强度,以及比rhO-Al2O3键合的浇头的较小平均孔径。结果归因于六丙氨酸钙的形成。在毛孔内检测到一些Ca(6),该毛孔占据孔隙中的空间并防止形成互连的孔,而一些Ca(6)存在于孔外,这增强了结构的致密化并降低了孔的尺寸。此外,通过在水泥键合的浇注液中添加微米粉可以促进互连的孔形成,但由于形成低熔点 - 温度相(C(2)AS),较低的热破裂模量。

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