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人工晶体学报 ›› 2004, Vol. 33 ›› Issue (4): 500-509.

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用数学模型计算生长大尺寸光学晶体加热系统结构第2部分-在Ф400mm CaF2晶体生长中计算辐射-传导热交换的方法和结果

  

  1. Progressive Technologies s.r.o., Be(n)esovská 26, Praha 10, CzR;Crystagon, Inc., Cleveland, Ohio, USA
  • 出版日期:2004-08-15 发布日期:2021-01-20

Mathematical Modeling as a Tool for Thermal Unit Constructing for Large Optical Crystal Growing Part Ⅱ- Technique and Results of Radiativeconductive Heat Exchange Calculations for CaF2Ф 400mm Crystal Growing

Ju.Linhart;Myron Pankevich   

  • Online:2004-08-15 Published:2021-01-20

摘要: 大尺寸氟化物晶体的生长是基于对晶体炉热交换的实验研究和计算结果,在晶体生长过程的不同阶段解决了复杂结构生长容器的边界条件和温场的二维计算任务.我们在这里给出了晶体生长过程中温场设置和转变的具体数据.所有的计算都是根据晶体、熔体,容器材料的光学特性与光谱和温度的关系以及它们的热物理值与温度的关系做出的.这些结果包括了迄今有关氟化物晶体生长系统和过程的最精确的数据,可用于生长技术工艺的发展以及晶体生长炉和容器的设计.

关键词: 辐射-传导热交换(RCHE);边界条件;二维温场;温度分布

Abstract: Growth of large size fluoride crystals was based on the results of calculations and experimental research of thermal exchange in furnace heating units. Boundary conditions in containers of complicated configurations and two-dimensional task for temperature fields calculations in a growing crystal in different stages of technological process were solved. We presented here concrete data on temperature fields configurations and their transformation in process of crystal growth. All calculations were done using spectral and temperature dependence of optical characteristics of crystals, melt, container materials and also temperature dependence of their thermo-physical values.The results could be used in technological processes developments and in a design and construction of growth furnaces and containers. To this time these results contain the most precise data on temperature fields forming in fluorides crystal growth processes and systems.

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