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NASA NTRS · 20030060509

Improved Crystal Quality By Detached Solidification in Microgravity

Abstract

Many microgravity directional solidification experiments yielded ingots with portions that grew without contacting the ampoule wall, leading to greatly improved crystallographic perfection. Our long term goals have been: (1) To develop a complete understanding of all of the phenomena of detached solidification.; (2) To make it possible to achieve detached solidification reproducibly; (3) To increase crystallographic perfection through detached solidification. We have three major achievements to report here: (1) We obtained a new material balance solution for the Moving Meniscus Model of detached solidification. This solution greatly clarifies the physics as well as the roles of the parameters in the system; (2) We achieved detached solidification of InSb growing on earth in BN-coated ampoules; (3) We performed an extensive series of experiments on freezing water that showed how to form multiple gas bubbles or tubes on the ampoule wall. However, these did not propagate around the wall and lead to fully detached solidification unless the ampoule wall was extremely rough and non-wetted.

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BibTeXRIS

Regel, Liya L., Wilcox, William R., Wang, Yaz-Hen, Wang, Jian-Bin. 2003-02-01. Improved Crystal Quality By Detached Solidification in Microgravity. https://ntrs.nasa.gov/citations/20030060509

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