Phase transformations in xenotime rare-earth orthophosphates

被引:37
作者
Hay, R. S. [1 ]
Mogilevsky, P. [1 ,2 ]
Boakye, E. [1 ,2 ]
机构
[1] Air Force Res Lab, Mat & Mfg Directorate, Wright Patterson AFB, OH 45433 USA
[2] UES Inc, Dayton, OH 45432 USA
关键词
Phase transformations; Oxides; Transformation mechanisms; Transformation plasticity; TEM; MATRIX COMPOSITES; CRYSTAL-CHEMISTRY; ZIRCON-TYPE; ELASTIC-CONSTANTS; THERMAL-EXPANSION; HEAT-CAPACITY; HIGH-PRESSURE; MONAZITE-TYPE; DEFORMATION; ANHYDRITE;
D O I
10.1016/j.actamat.2013.08.005
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
Xenotime rare-earth orthophosphates were made with compositions close to the xenotime monazite phase boundary. Stress-driven phase transformations and their associated deformation mechanisms were characterized for these compositions by extensive conventional and high-resolution transmission electron microscopy. Three phase transformations were identified beneath indentations in polycrystalline TbPO4, in deformation bands in (Gd0.4Dy0.6)PO4 fiber coatings after fiber push-out, and in polycrystalline (Gd0.3Tb0.7)PO4: xenotime -> monazite, xenotime -> anhydrite, and anhydrite monazite A structure with many alternating monolayers of {010} xenotime and (010) anhydrite was common, along with structures with larger and variable lamellar thickness. The xenotime 4 anhydrite transformation occurs by b = 1/2(100){010} slip of xenotime. However, the occasional presence of other habit planes suggests there are other transformation mechanisms. Atom shuffles were calculated for all observed transformations. Shuffles required for the anhydrite monazite transformation are smaller than those for xenotime -.4 monazite. This suggests that the preferred pathway for the xenotime monazite transformation may have an anhydrite intermediate. Anhydrite also transformed to monazite in areas where high compatibility stress during (120) and (102) anhydrite deformation twinning was inferred. Monazite anhydrite interphase boundaries and (120) anhydrite twin boundaries were mobile at room temperature under electron beam illumination. Xenotime rareearth orthophosphates with compositions close to the monazite stability field are suggested also to be close to the monazite xenotime anhydrite phase-stability triple point. Transformation and deformation mechanisms are discussed. Published by Elsevier Ltd. on behalf of Acta Materialia Inc.
引用
收藏
页码:6933 / 6947
页数:15
相关论文
共 67 条
[31]   Texture development of polycrystalline anhydrite experimentally deformed in torsion [J].
Heidelbach, F ;
Stretton, IC ;
Kunze, K .
INTERNATIONAL JOURNAL OF EARTH SCIENCES, 2001, 90 (01) :118-126
[32]   Microstructural analysis of anhydrite rocks from the Triassic Evaporites, Umbria-Marche Apennines, Central Italy: An insight into deformation mechanisms and possible slip systems [J].
Hildyard, Rebecca C. ;
Prior, David J. ;
Faulkner, Daniel R. ;
Mariani, Elisabetta .
JOURNAL OF STRUCTURAL GEOLOGY, 2009, 31 (01) :92-103
[33]   Theoretical crystal chemistry of phosphates:: Topological analysis and classification of suprapolyhedral ensembles of orthophosphates and their analogues Mx(TO4)y [J].
Ilyushin, GD ;
Blatov, VA .
CRYSTALLOGRAPHY REPORTS, 2004, 49 (03) :327-342
[34]   Mullite (Nextel™ 720) fibre-reinforced mullite matrix composites exhibiting favourable thermomechanical properties [J].
Kaya, C ;
Butler, EG ;
Selcuk, A ;
Boccaccini, AR ;
Lewis, MH .
JOURNAL OF THE EUROPEAN CERAMIC SOCIETY, 2002, 22 (13) :2333-2342
[35]   Effectiveness of monazite coatings in Oxide/Oxide composites after long-term exposure at high temperature [J].
Keller, KA ;
Mah, TI ;
Parthasarathy, TA ;
Boakye, EE ;
Mogilevsky, P ;
Cinibulk, MK .
JOURNAL OF THE AMERICAN CERAMIC SOCIETY, 2003, 86 (02) :325-332
[36]   Crystal chemistry of REEXO4 compounds (X = P, As, V).: II.: Review of REEXO4 compounds and their stability fields [J].
Kolitsch, U ;
Holtstam, D .
EUROPEAN JOURNAL OF MINERALOGY, 2004, 16 (01) :117-126
[37]   Computational study of ZrSiO4 polymorphs [J].
Korkin, A ;
Kamisaka, H ;
Yamashita, K ;
Safonov, A ;
Bagatur'yants, A .
APPLIED PHYSICS LETTERS, 2006, 88 (18)
[38]   Fracture behavior of monazite-coated alumina fiber-reinforced alumina-matrix composites at elevated temperature [J].
Lee, PY ;
Imai, M ;
Yano, T .
JOURNAL OF THE CERAMIC SOCIETY OF JAPAN, 2004, 112 (1312) :628-633
[39]   Effects of sintering condition on mechanical properties of monazite-coated alumina-fiber/alumina-matrix composites fabricated by hot-pressing [J].
Lee, PY ;
Imai, M ;
Yano, T .
JOURNAL OF THE CERAMIC SOCIETY OF JAPAN, 2004, 112 (1301) :29-34
[40]   Experimental shock deformation in zircon: a transmission electron microscopic study [J].
Leroux, H ;
Reimold, WU ;
Koeberl, C ;
Hornemann, U ;
Doukhan, JC .
EARTH AND PLANETARY SCIENCE LETTERS, 1999, 169 (3-4) :291-301