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Effect of Phase Separation Structure on the Crystallization Property of Blast Furnace Slag

机译:相分离结构对高炉炉渣结晶性能的影响

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Performance of slag glass ceramic largely depends on the phase separation structure formed in heat treatment.In the paper,the crystallization properties and its relation with phase separation structure of blast furnace slag (BFS) are researched.Three water-quenched samples and an air-quenched sample were respectively prepared.After conducting temper experiments and analyzing XRD and DTA results,the following conclusions have been acquired.Two crystallization regions exist in BFS system.In parent glass with phase separation structure,Ca3Mg(SiO4)2 and Ca2MgSi2O7 would form at lower temperature but Ca2Al2Si2O7 would appear at higher temperature than that in parent glass with homogenous structure.The former contributes to the existence of lower polymerized [SiO4] units and more Ca2+ or Mg2+ in Ca-rich phase of phase separation glass,while the later is due to the diffusing hindrance of [AlO4] in diffusing path and interface resistance in phase separation structure.
机译:炉渣玻璃陶瓷的性能主要取决于热处理中形成的相分离结构。研究了高炉渣(BFS)的结晶性能及其与相分离结构的关系。采用水淬火样品和空气 - 分别制备淬火样品。进行调味实验并分析XRD和DTA结果,已经获得了以下结论。在BFS系统中存在杂种结晶区域。具有相分离结构的亲本玻璃,Ca 3Mg(SiO 4)2和Ca2mgsi2O7将形成较低的温度,但Ca2Al2Si2O7在较高的温度下显得比具有均匀结构的母体玻璃的温度高。前者有助于在相分离玻璃的Ca-富含相的富含Ca的相位和更多Ca2 +或Mg2 +的情况下的存在。由于[ALO4]的漫射路径和相分离结构中的界面电阻的漫射阻力。

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