Inequalities for Single Crystal Tube Growth by Edge-Defined Film-Fed Growth Technique

The axi-symmetric Young-Laplace differential equation is analyzed. Solutions of this equation can describe the outer or inner free surface of a static meniscus (the static liquid bridge free surface between the shaper and the crystal surface) occurring in single crystal tube growth. The analysis con...

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Main Authors: Stefan Balint, Agneta M. Balint
Format: Article
Language:English
Published: SpringerOpen 2009-01-01
Series:Journal of Inequalities and Applications
Online Access:http://dx.doi.org/10.1155/2009/732106
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spelling doaj-f5091a7c5da04d4b8b49534e853b33c72020-11-24T21:41:26ZengSpringerOpenJournal of Inequalities and Applications1025-58341029-242X2009-01-01200910.1155/2009/732106Inequalities for Single Crystal Tube Growth by Edge-Defined Film-Fed Growth TechniqueStefan BalintAgneta M. BalintThe axi-symmetric Young-Laplace differential equation is analyzed. Solutions of this equation can describe the outer or inner free surface of a static meniscus (the static liquid bridge free surface between the shaper and the crystal surface) occurring in single crystal tube growth. The analysis concerns the dependence of solutions of the equation on a parameter p which represents the controllable part of the pressure difference across the free surface. Inequalities are established for p which are necessary or sufficient conditions for the existence of solutions which represent a stable and convex outer or inner free surfaces of a static meniscus. The analysis is numerically illustrated for the static menisci occurring in silicon tube growth by edge-defined film-fed growth (EFGs) technique. This kind of inequalities permits the adequate choice of the process parameter p. With this aim this study was undertaken. http://dx.doi.org/10.1155/2009/732106
collection DOAJ
language English
format Article
sources DOAJ
author Stefan Balint
Agneta M. Balint
spellingShingle Stefan Balint
Agneta M. Balint
Inequalities for Single Crystal Tube Growth by Edge-Defined Film-Fed Growth Technique
Journal of Inequalities and Applications
author_facet Stefan Balint
Agneta M. Balint
author_sort Stefan Balint
title Inequalities for Single Crystal Tube Growth by Edge-Defined Film-Fed Growth Technique
title_short Inequalities for Single Crystal Tube Growth by Edge-Defined Film-Fed Growth Technique
title_full Inequalities for Single Crystal Tube Growth by Edge-Defined Film-Fed Growth Technique
title_fullStr Inequalities for Single Crystal Tube Growth by Edge-Defined Film-Fed Growth Technique
title_full_unstemmed Inequalities for Single Crystal Tube Growth by Edge-Defined Film-Fed Growth Technique
title_sort inequalities for single crystal tube growth by edge-defined film-fed growth technique
publisher SpringerOpen
series Journal of Inequalities and Applications
issn 1025-5834
1029-242X
publishDate 2009-01-01
description The axi-symmetric Young-Laplace differential equation is analyzed. Solutions of this equation can describe the outer or inner free surface of a static meniscus (the static liquid bridge free surface between the shaper and the crystal surface) occurring in single crystal tube growth. The analysis concerns the dependence of solutions of the equation on a parameter p which represents the controllable part of the pressure difference across the free surface. Inequalities are established for p which are necessary or sufficient conditions for the existence of solutions which represent a stable and convex outer or inner free surfaces of a static meniscus. The analysis is numerically illustrated for the static menisci occurring in silicon tube growth by edge-defined film-fed growth (EFGs) technique. This kind of inequalities permits the adequate choice of the process parameter p. With this aim this study was undertaken.
url http://dx.doi.org/10.1155/2009/732106
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