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High Temperature Material Processes: An International Quarterly of High-Technology Plasma Processes
SJR: 0.176 SNIP: 0.48 CiteScore™: 1.3

ISSN Печать: 1093-3611
ISSN Онлайн: 1940-4360

Выпуски:
Том 24, 2020 Том 23, 2019 Том 22, 2018 Том 21, 2017 Том 20, 2016 Том 19, 2015 Том 18, 2014 Том 17, 2013 Том 16, 2012 Том 15, 2011 Том 14, 2010 Том 13, 2009 Том 12, 2008 Том 11, 2007 Том 10, 2006 Том 9, 2005 Том 8, 2004 Том 7, 2003 Том 6, 2002 Том 5, 2001 Том 4, 2000 Том 3, 1999 Том 2, 1998 Том 1, 1997

High Temperature Material Processes: An International Quarterly of High-Technology Plasma Processes

DOI: 10.1615/HighTempMatProc.v2.i3.70
pages 381-389

INTERACTION BETWEEN MECHANICAL STRESSES AND OXIDATION OF THE NIOBIUM

C. Bouillet
Faculte des Sciences Mirande - Laboratoire de Recherches sur la Reactivite des Solides U.M.R. 5613 CNRS - Universite de Bourgogne - BP 400 - 21011 Dijon Cedex - France
D. Ciosmak
Faculte des Sciences Mirande - Laboratoire de Recherches sur la Reactivite des Solides U.M.R. 5613 CNRS - Universite de Bourgogne - BP 400 - 21011 Dijon Cedex - France
M. Lallemant
Faculte des Sciences Mirande - Laboratoire de Recherches sur la Reactivite des Solides U.M.R. 5613 CNRS - Universite de Bourgogne - BP 400 - 21011 Dijon Cedex - France

Краткое описание

The oxidation of niobium at 700°C and at air pressures from 30 to 1000 hPa leads to the formation of a stratified oxide scale. Analyses of the evolutions of the phases, the crystalline textures and mechanical stresses during oxidation are determined by X-ray diffraction techniques. Interactions of chemical and mechanical processes constitute the driving force of the reaction and can explain the stratified morphology of niobium oxide.


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