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Crystallization behavior during cooling and glass-forming ability of Al2O3-poor Li2O-Al2O3-SiO2 melts

机译:贫Al2O3的Li2O-Al2O3-SiO2熔体的冷却过程中的结晶行为和玻璃形成能力

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摘要

The influence of K2O/(MgO + K2O) on some melt properties, including crystallization during cooling of melts and glass-forming ability, was investigated in the Li2O-Al2O3-SiO2 System with low Al2O3 content. The dependence of viscosity on K2O/MgO + K2O) above 1000 degrees C showed a monotonic decrease due to the reduction of [MgO4] concentration and the conductivity also decreased due to the larger ion radius of K. The temperature dependence of conductivity for all melts showed an abrupt change at one temperature due to crystallization in which temperature of crystallization decreases with increase of K2O. The crystallization behavior near liquidus temperature was studied quantitatively by calculating the crystal volume fraction from apparent viscosity value. The glass-forming ability of the melts was discussed by using data related with viscosity and crystallization. Finally, it was suggested that the melts with K2O/ (MgO + K2O) >= 0.75 have a good glass-forming ability. (c) 2007 Published by Elsevier B.V.
机译:在低Al2O3含量的Li2O-Al2O3-SiO2体系中,研究了K2O /(MgO + K2O)对某些熔体性质的影响,包括熔体冷却过程中的结晶和玻璃形成能力。在1000摄氏度以上,粘度对K2O / MgO + K2O的依赖性显示出由于[MgO4]浓度的降低而单调降低,而电导率也由于K的较大离子半径而降低。所有熔体的电导率与温度的关系结晶温度在一个温度下由于结晶而突然改变,其中结晶温度随着K2O的增加而降低。通过从表观粘度值计算晶体体积分数,定量研究了接近液相线温度的结晶行为。通过使用与粘度和结晶有关的数据讨论了熔体的玻璃形成能力。最后,建议K2O /(MgO + K2O)> = 0.75的熔体具有良好的玻璃形成能力。 (c)2007年由Elsevier B.V.

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