Crystallization Behavior of Nd2O3 Doped Na2O–CaO–SiO2 Laser Glass-ceramics
来源期刊:JOURNAL OF MATERIALS SCIENCE TECHNOLOG2015年第11期
论文作者:Shuming Wang Fenghua Kuang Dazhan Zhang Xu Zhou Minghui Tang
文章页码:1158 - 1160
摘 要:For the desirable laser optical property, transition metals or rare-earths are always doped into parent glasses as active ions, and this doping will affect the crystallization of the precursor glasses inevitably.In this work, crystallization behavior of Na O–Ca O–Si O2 system glasses doped with Nd2O3 was investigated. The crystallization kinetic parameters including the crystallization apparent activation energy(E)and the Avrami parameter(n) were also measured. The results show that the Na O–Ca O–Si O2 system glassceramics with the Na2Ca2Si3O9 crystal as primary phase can be highly crystalized as above 90%. The Nd2O3 doping has a significant influence on the crystallization apparent activation energy and the Avrami parameter, which affect the crystallization behavior and morphology of the transparent glass-ceramics of this system.
Shuming Wang,Fenghua Kuang,Dazhan Zhang,Xu Zhou,Minghui Tang
Department of Materials Science and Engineering, University of Science & Technology Beijing
摘 要:For the desirable laser optical property, transition metals or rare-earths are always doped into parent glasses as active ions, and this doping will affect the crystallization of the precursor glasses inevitably.In this work, crystallization behavior of Na O–Ca O–Si O2 system glasses doped with Nd2O3 was investigated. The crystallization kinetic parameters including the crystallization apparent activation energy(E)and the Avrami parameter(n) were also measured. The results show that the Na O–Ca O–Si O2 system glassceramics with the Na2Ca2Si3O9 crystal as primary phase can be highly crystalized as above 90%. The Nd2O3 doping has a significant influence on the crystallization apparent activation energy and the Avrami parameter, which affect the crystallization behavior and morphology of the transparent glass-ceramics of this system.
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