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On the Creation of a Stable Drop-Like Static Meniscus, Appropriate for the Growth of a Single Crystal Tube with Prior Specified Inner and Outer Radii

机译:关于创建稳定的静态静态弯月面,适用于具有先前规定的内和外半径的单晶管的生长

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摘要

A theoretical procedure for the creation of a stable drop-like static meniscus, appropriate for the growth of a single crystal tube, with a priori specified inner and outer radius, is presented. The method locates the controllable part p of the pressure difference across the free surface. It consists in a set of calculus, which leads to the determination of the melt column height (between the horizontal crucible melt level and the shaper top level) in function of the pressure of the gas flow (introduced in the furnace for release the heat) in order to obtain the desired meniscus. The procedure is presented in general and is numerically illustrated for InSb tubes. The novelty is the algorithm for the exact determination of p, which has to be used, the determination of the melt column height, and the evaluation of the effect of shaper radii. The setting of the thermal conditions, which assure that for the obtained static meniscus the solidification conditions are satisfied at the “right” places, is not considered here.
机译:提出了一种制造适合于单晶管的稳定静态弯液面的理论过程,其具有优先的内部和外半径的单晶管的生长。该方法定位在自由表面上的压力差的可控部分P.它包括一组微积分,这导致熔体柱高度(水平坩埚熔体水平和平板顶部之间)的测定在气体流动的功能上(在炉中引入释放热量)为了获得所需的半月板。该程序通常呈现,并以用于INSB管的数量示出。新颖性是用于精确测定P的算法,其必须使用,确定熔体柱高度,以及Shaper半径的效果的评估。热条件的设定,其确保用于获得的静态弯月面凝固条件在“正确的”位置满足,这里不考虑。

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