材料科学
热膨胀
各向异性
衰减系数
Crystal(编程语言)
钕
吸收(声学)
光学
压力(语言学)
热的
旋转对称性
冯·米塞斯屈服准则
大气温度范围
偏转(物理)
单轴晶体
复合材料
热力学
机械
有限元法
光轴
激光器
物理
哲学
程序设计语言
语言学
计算机科学
镜头(地质)
作者
Klaus Böttcher,W. Miller,Steffen Ganschow
标识
DOI:10.1002/crat.202000106
摘要
Abstract The Czochralski growth of NdScO 3 single crystals along the [110]‐direction is numerically analyzed with the focus on the influence of the optical thickness on the shape of the crystal–melt interface and on the generation of thermal stresses. Due to lack of data, the optical thickness (i.e., the absorption coefficient) is varied over the entire interval between optically thin and thick. While the thermal calculation in the entire furnace is treated as axisymmetric, the stress calculation of the crystal is done three‐dimensionally in order to meet the spatial anisotropy of thermal expansion and elastic coefficients. The numerically obtained values of the deflection of the crystal/melt interface meet the experimental ones for absorption coefficients in the range between 40 and 200 m −1 . The maximum values of the von Mises stress appear for the case of absorption coefficient between 20 and 40 m −1 . Applying absorption coefficients in the range between 3 and 100 m −1 leads to local peaks of high temperature in the shoulder region and the tail region near the end of the cylindrical part.
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