INVESTIGATION OF THE KINETICS OF VACUUM SINTERING OF OPTICAL LUMINESCENT CERAMICS Y3-xScxA5O12:Cr

V. Lapin, V. E. Suprunchuk, V. Tarala, D. Vakalov, A. A. Kravtsov, F. Malyavin, L. V. Tarala, E. V. Medyanik, L. Kozhitov
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Abstract

The purpose of this work is to study the effect of scandium in the dodecahedral and octahedral positions of the garnet crystal lattice on the features of vacuum sintering of optical ceramics Y3-хScxAl2-yScyAl3O12:Cr, as well as on its optical and luminescent properties. YSAG:Cr optical luminescent ceramics were manufactured for the first time from ceramic powders of metastable compositions with a high scandium content in a dodecahedral position. The considered compositions were described by the general formula Y3-хScxAl2-yScyAl3O12, where 0,12 ? x ? 1,50 and 0,08 ? y ? 1,00 f. u. with a total scandium content from 0.12 to 1.70 f. u. The following studies of YSAG:Cr: ceramic samples were carried out: X-ray diffractometry, measurement of the shrinkage kinetics of ceramic compacts by dilatometry, study of the morphology and elemental composition of the ceramic surface by scanning electron microscopy (SEM). The light transmission and luminescence spectra were measured. It is shown that ceramics made from compositions with a predominant scandium content in the dodecahedral position reach maximum density at lower temperatures compared to compositions containing a greater amount of scandium in octahedral positions. It was found that with an increase in the sintering temperature of YSAG:Cr ceramics compositions with a high scandium content in the dodecahedral position become unstable.
光致发光陶瓷 Y3-xScxA5O12:Cr 真空变细的动力学研究
这项工作的目的是研究石榴石晶格十二面体和八面体位置上的钪对真空烧结光学陶瓷 Y3-хScxAl2-yScyAl3O12:Cr 的特征及其光学和发光特性的影响。YSAG:Cr 光学发光陶瓷是首次从十二面体位置钪含量较高的可变成分陶瓷粉末中制造出来的。所考虑的成分用通式 Y3-хScxAl2-yScyAl3O12 描述,其中 0,12 ? x ?1,50 和 0,08 ?对 YSAG:Cr 陶瓷样品进行了以下研究:X 射线衍射测定法、通过膨胀测定法测量陶瓷压实物的收缩动力学、通过扫描电子显微镜(SEM)研究陶瓷表面的形态和元素组成。还测量了透光率和发光光谱。结果表明,与八面体位置钪含量较高的成分相比,十二面体位置钪含量占主导地位的成分制成的陶瓷在较低温度下就能达到最大密度。研究发现,随着 YSAG:Cr 陶瓷烧结温度的升高,十二面体位置钪含量高的成分变得不稳定。
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