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Analysis of contact-less crystal growth characteristics of mercurous chloride by numerical simulations and experiments in physical vapor transport.

机译:通过物理气相传输中的数值模拟和实验分析氯化亚汞的非接触晶体生长特性。

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摘要

An experimental contact-free crystal growth technique was developed using mercurous chloride. Mercurous halides have low thermal conductivity and very high anisotropy, which causes thermal stress in the crystals during and after growth. Thermal stress enhances cracking and inhomogeneity in the refractive index, which results in high scattering. Firstly, several apparatus for purifying and growing mercurous chloride crystals were designed and constructed to achieve the best result. Secondly, experiments were performed using different types of purification columns to establish the best in order to purify the source materials. Then, several experiments were undertaken to assess the growth of mercurous chloride crystals using different ampoules and different temperature distributions. Finally, heating and cooling procedures had to be developed to avoid cracking the crystal during experiments. One of the issues related to crystal growth is thermal convection. Numerical simulations were used to guide the design of the experiments to minimize these effects. The simulations were achieved using three commercial codes, CFD-2000, Field View and Tecplot. The geometry of the ampoules and their thermal boundary conditions were systematically changed in the simulations to achieve acceptable thermal convection field. Subsequent experiments resulted in homogeneous and extremely transparent mushroom shaped Single crystals.
机译:使用氯化亚汞开发了一种实验性无接触晶体生长技术。卤化汞的导热系数低,且各向异性非常高,这会在生长期间和之后在晶体中引起热应力。热应力会增加折射率的破裂和不均匀性,从而导致高散射。首先,设计和构造了几种纯化和生长氯化亚汞晶体的设备,以达到最佳效果。其次,使用不同类型的纯化柱进行实验以建立最佳纯化柱,以纯化原料。然后,进行了一些实验,以评估使用不同安瓿和不同温度分布的氯化亚汞晶体的生长。最后,必须开发加热和冷却程序,以避免在实验过程中晶体破裂。与晶体生长有关的问题之一是热对流。数值模拟被用来指导实验设计以最小化这些影响。使用三个商业代码CFD-2000,Field View和Tecplot实现了仿真。在模拟中系统更改了安瓿的几何形状及其热边界条件,以实现可接受的热对流场。随后的实验产生了均匀且极透明的蘑菇形单晶。

著录项

  • 作者

    Kim, Joo-Soo.;

  • 作者单位

    The University of Alabama in Huntsville.;

  • 授予单位 The University of Alabama in Huntsville.;
  • 学科 Engineering Mechanical.
  • 学位 Ph.D.
  • 年度 2003
  • 页码 164 p.
  • 总页数 164
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 机械、仪表工业;
  • 关键词

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