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The Effect of Acidity Coefficient on Crystallization Behavior of Blast Furnace Slag Fibers

机译:酸度系数对高炉矿渣纤维结晶行为的影响

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摘要

The chemical structure of mineral wool fiber was investigated by using Fourier Transform Infrared Spectroscopy (FTIR). Next, the glass transition temperature and the crystallization temperature of the fibers were studied. Finally, the crystallization kinetics of fiber was studied. The results show that the chemical bond structure of fibers gets more random with the increase of acidity coefficient. The crystallization phases of the fibers are mainly melilites, and also a few anorthites and diopsides. The growth mechanism of the crystals is three dimensional. The fibers with acidity coefficient of 1.2 exhibit the best thermal stability and is hard to crystallize as it has the maximum aviation energy of crystallization kinetics.
机译:利用傅里叶变换红外光谱(FTIR)研究了矿棉纤维的化学结构。接下来,研究了纤维的玻璃化转变温度和结晶温度。最后,研究了纤维的结晶动力学。结果表明,随着酸度系数的增加,纤维的化学键结构变得更加无规。纤维的结晶相主要是陨石,还有一些钙长石和透辉石。晶体的生长机理是三维的。酸度系数为1.2的纤维具有最佳的热稳定性,并且由于具有最大的航空动力学结晶动力,因此难以结晶。

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