Abstract
The electron-beam physical vapor deposition of erbium-oxide coatings onto sapphire wafers is investigated to evaluate processing effects on the residual stress state and microstructure. The erbium-oxide coatings are found to be in a compressive stress state. The crystallographic texture of the erbium-oxide coating is evaluated using X-ray diffraction along with an assessment of forming the cubic erbia phase as a function of substrate temperature. In addition to the cubic erbia phase, an orthorhombic phase is found at the lower deposition temperatures. A transition is found from a two-phase erbium-oxide coating to a single phase at deposition temperatures above 948 K. The variation in morphology with deposition temperature observed in fracture cross-sections is consistent with features of the classic zone growth models for vapor-deposited oxide coatings. For high-temperature applications, a deposition process temperature above 948 K is seen to produce a stoichiometric, fully dense, and equiaxed-polycrystalline coating of cubic erbia.




Similar content being viewed by others
Explore related subjects
Discover the latest articles and news from researchers in related subjects, suggested using machine learning.References
Barleon L, Casal V, Lenhart L (1991) Fusion Eng Design 14:401
Malang S, Borgstedt HU, Farnum EH, Natesan K, Vitkovski IV (1995) Fusion Eng Design 27:570
Park JH, Kassner TF (1996) J Nucl Mater 233–237:476
Mikhelashvili V, Eisenstein G, Edelmann F (2002) Appl Phys Lett 80:2156
Singh MP, Thakur CS, Shalini K, Bhat N, Shivashankar SA (2003) Appl Phys Lett 83:2889
Hubbard KM, Espinoza BF (2000) Thin Solid Films 366:175
Wood BP, Reass WA, Henins I (1996) Surf Coatings Technol 85:70
Walter KC, Nastasi M, Baker NP, Munson CP, Scarborough WK, Scheuer JT, Wood BP, Conrad JR, Sridharan K, Malik S, Bruen RA (1998) Surf Coatings Technol 103–104:205
Koch F, Brill R, Maier H, Levchuk D, Suzuki A, Muroga T, Bolt H (2004) J Nucl Mater 329–333:1403
Pint BA, Tortorelli PF, Jankowski A, Hayes J, Muroga T, Suzuki A, Yeliseyeva OI, Chernov VM (2004) J Nucl Mater 329–333:119
Campbell DS (1970) In: Maissel L, Glang R (eds) Handbook of thin film technology (Ch. 12). McGraw-Hill, New York
Movchan BA, Demchishin AV (1969) Fizika Metall 28:653
Bunshah RF, Juntz RS (1973) Met Trans 4:21
Colen M, Bunshah RF (1976) J Vac Sci Technol 13:536
Saiki A (1985) J Ceram Assoc Jpn 93:649
Wenk H-R (1981) Z Kristallogr 154:137
Stoney GG (1909) Proc R Soc Lond Ser A 82:172
Brenner A, Senderoff S (1949) J Res Nat Bur Stand 42:105
Hoffman RW (1966) Phys Thin Films 3:211
Saul RH (1969) J Appl Phys 40:3273
Olsen GH, Ettenberg M (1977) J Appl Phys 48:2543
Vilms J, Kerps D (1982) J Appl Phys 53:1536
Townsend PH, Barnett DM, Brunner TA (1987) J Appl Phys 62:4438
Henein GE, Wagner WR (1983) J Appl Phys 54:6395
Jankowski A, Bionta F, Gabriele P (1989) J Vac Sci Technol A7:210
Nye JF (1960) Physical properties of crystals. Clarendon, Oxford, p 131
Trent HM, Stone DE, Beaubien LA (1982) In: Gray DE (ed) American Institute of Physics handbook (3rd ed). McGraw-Hill, New York, p. 55
Huang T, Parrish W, Masciocchi N, Wang P (1990) Adv X-Ray Anal 33:295
CRC (1985) In: Weast RC, Astle MJ, Beyer WH (eds) Handbook of chemistry and physics (65th ed). CRC Press, Boca Raton, p F-59
Jankowski AF, Hayes JP, Felter TE, Evans C, Nelson AJ (2002) Thin Solid Films 420–421:43
Sawada A, Suzuki A, Maier H, Koch F, Terai T, Muroga T (2005) Fusion Eng Design 75–79:737
Adams RO, Digiallonardo A, Nordin CW (1987) Thin Solid Films 154:101
Acknowledgements
The research was sponsored by the Office of Fusion Energy Sciences, U.S. Department of Energy and by the US-Japan JUPITER-II collaboration with the MHD coating subtask led by Prof. T. Muroga, NIFS (Natl. Institute for Fusion Science). This work was performed under the auspices of the U.S. Department of Energy by the University of California, Lawrence Livermore National Laboratory under Contract No. W-7405-Eng-48.
Author information
Authors and Affiliations
Corresponding author
Rights and permissions
About this article
Cite this article
Jankowski, A.F., Saw, C.K., Ferreira, J.L. et al. Morphology, microstructure, and residual stress in EBPVD erbia coatings. J Mater Sci 42, 5722–5727 (2007). https://doi.org/10.1007/s10853-006-0658-7
Received:
Accepted:
Published:
Issue Date:
DOI: https://doi.org/10.1007/s10853-006-0658-7


