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Thermal Barrier Coatings Manufactured by Suspension Plasma Spraying - A Review

   | Oct 29, 2018

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1. Greatrix D.R., Powered Flight, Springer, London, 2012.10.1007/978-1-4471-2485-6Search in Google Scholar

2. Simoes-Moreira J.R., Fundamentals of thermodynamics applied to thermal power plants [in] Thermal power plant performance analysis, G.F.M. de Souza [ed.], Springer, London, 2012.10.1007/978-1-4471-2309-5_2Search in Google Scholar

3. Padture N.P., Gell M., Jordan E.H., Thermal barrier coatings for gas-turbine engine applications, Science 296 (2002) 280-284.10.1126/science.1068609Search in Google Scholar

4. Krause A.R., Garces H.F., Dwidevi G., Ortiz A.L., Sampath S., Padture N.P., Calcia-magnesia-alumino-silicate (CMAS) - induced degradation and failure of air plasma sprayed yttria stabilized zirconia thermal barrier coatings, Acta Materialia, 105 (2016) 355-366.Search in Google Scholar

5. Dimiduk D.M., Perepezko J.H., Mo-Si-B alloys: developing a revolutionary turbine engine material, MRS Bulletin 28 (2003) 639-645.Search in Google Scholar

6. Clarke D.R., Oechsner M., Padture N.P., Thermal barrier coatings for more efficient gas turbine engines, MRS Bulletin 37 (2012) 891-898.10.1557/mrs.2012.232Search in Google Scholar

7. Hardwicke C.U., Lau Y.-C., Advances in thermal spray coatings for gas turbines and energy generation: a review, Journal of Thermal Spray Technology 22 (2013) 564-576.10.1007/s11666-013-9904-0Search in Google Scholar

8. Sadowski T., Golewski P., Loadings in thermal barrier coatings of jet engine turbine blades - an experimental research and numerical modeling, Springer, London, 2016.10.1007/978-981-10-0919-8Search in Google Scholar

9. Guignard A., Development of thermal spray processes with liquid feedstocks, Forschungszentrum Julich, 2012.Search in Google Scholar

10. Darolia R., Thermal barrier coatings technology: critical review, progress update, remaining challenges and prospects, International Materials Review 58 (2013) 315-348.Search in Google Scholar

11. Schulz U., Schmucker M., Microstructure of ZrO2 thermal barrier coatings applied by EB-PVD, Materials Science and Engineering: A 276 (2000) 1-8.Search in Google Scholar

12. Schulz U., Saruhan B., Fritscher K, Leyens C., Review on advanced EB-PVD ceramic topcoats for TBC applications, International Journal of Applied Ceramic Technology 1 (2004) 302-315.10.1111/j.1744-7402.2004.tb00182.xSearch in Google Scholar

13. VanEvery K., Krane M.J.M., Trice R.W., Wang H., Porter W., Besser M., Sordelet D., Ilavsky J., Almer J., Column formation in suspension plasma sprayed coatings and resultant thermal properties, Journal of Thermal Spray Technology 20 (2011) 817-828.10.1007/s11666-011-9632-2Search in Google Scholar

14. Karaoglanli A.C., Doleker K.M., Ozgurluk Y., State of the art thermal barrier coating (TBC) materials and TBC failure mechanism [in] Properties and characterization of modern materials, A. Oschner and H. Altenbach [eds.], Springer, Singapore, 2017.10.1007/978-981-10-1602-8_34Search in Google Scholar

15. Miller R.A., Current status of thermal barrier coatings - an overview, Surface and Coatings Technology 30 (1987) 1-11.10.1016/0257-8972(87)90003-XSearch in Google Scholar

16. Miller R.A., Thermal barrier coatings for aircraft engines: history and directions, Journal of Thermal Spray Technology 6 (1997) 35-42.10.1007/BF02646310Search in Google Scholar

17. Mauer G., Vassen R., Stoever D., Atmospheric plasma spraying of yttria-stabilized zirconia coatings with specific porosity, Surface and Coatings Technology 204 (2009) 172-179.10.1016/j.surfcoat.2009.07.017Search in Google Scholar

18. Vassen R., Jarligo M.O., Steinke T., Mack D.E., Stoever D., Overview on advanced thermal barrier coatings, Surface and Coatings Technology 205 (2010) 938-942.10.1016/j.surfcoat.2010.08.151Search in Google Scholar

19. Clarke D.R., Phillpot S.R., Thermal barrier coating materials, Materials Today 8 (2005) 22-29.10.1016/S1369-7021(05)70934-2Search in Google Scholar

20. 20. Stoever D., Pracht G., Lehmann H., Dietrich M., Doering J., Vassen R., New material concepts for next generation of plasma-sprayed thermal barrier coatings, Journal of Thermal Spray Technology 13 (2004) 76-83.10.1007/s11666-004-0052-4Search in Google Scholar

21. Pawłowski L., Finely grained nanometric and submicrometric coatings bythermal spraying: a review, Surface and Coatings Technology 202 (2008) 4318-4328.10.1016/j.surfcoat.2008.04.004Search in Google Scholar

22. Pawłowski L., Suspension and solution thermal spray coatings, Surface and Coatings Technology 203 (2009) 2807-2829.10.1016/j.surfcoat.2009.03.005Search in Google Scholar

23. Pawłowski L., The science and engineering of thermal spray coatings, 2nd ed., Wiley, Chichester, 2008.10.1002/9780470754085Search in Google Scholar

24. Fauchais P., Montavon G., Bertrand G., From powders to thermally sprayed coatings, Journal of Thermal Spray Technology 19 (2009) 56-80.10.1007/s11666-009-9435-xSearch in Google Scholar

25. Lima R.S., Marple B.R., Thermal spray coatings engineered from nanostructured ceramic agglomerated powders for structural, thermal barrier and biomedical applications: a review, Journal of Thermal Spray Technology 16 (2007) 40-63.10.1007/s11666-006-9010-7Search in Google Scholar

26. Gitzhofer F., Bouyer E., Boulos M.I., Suspension plasma spray, US5609921 A, 1997.Search in Google Scholar

27. Vassen R., Kassner H., Mauer G., Stoever D., Suspension plasma spraying: process characteristics and applications, Journal of Thermal Spray Technology 19 (2010) 219-225.10.1007/s11666-009-9451-xSearch in Google Scholar

28. Fauchais P., Vardelle M., Vardelle A., Goutier S., What do we know, what are the current limitations of suspension plasma spraying? Journal of Thermal Spray Technology 24 (2015) 1120-1129.Search in Google Scholar

29. Fauchais P., Vardelle A., Solution and suspension plasma spraying of nanostructure coatings [in] Advances plasma spray applications, H. Jazi [ed.], ISBN: 978-953-51-0349-3, InTech, 2012.10.5772/34449Search in Google Scholar

30. Sokołowski P., Pawłowski L., Review of recent studies on suspension plasma sprayed ZrO2 coatings [in] Advances in Materials Science Research, M.C. Wythers [ed.], 26 Nova Science Publisher, USA, 2016.Search in Google Scholar

31. Curry N., VanEvery K., Snyder T., Susnjar J., Bjorklund S., Performance testing of suspension plasma sprayed thermal barrier coatings produced with varied suspension parameters, Coatings 5 (2015) 338-356.10.3390/coatings5030338Search in Google Scholar

32. Marchand O., Bertrand P., Mougin J., Comminges C., Planche M.-P., Bertrand G., Characterization of suspension plasma sprayed solid oxy fuel cells electrodes, Surface and Coatings Technology 205 (2010) 993-998.10.1016/j.surfcoat.2010.06.001Search in Google Scholar

33. Fauchais P., Etchart-Salas R., Rat V., Coudert J.F., Caron N., Wittmann-Teneze K., Parameters controlling liquid plasma spraying: solutions, sols or suspensions, Journal of Thermal Spray Technology 17 (2008) 31-59.Search in Google Scholar

34. 34. Sokołowski P., Kozerski S., Pawłowski L., Ambroziak A., The key process parameters influecing formation of columnar microstructure in suspension plasma sprayed zirconia coatings, Surface and Coatings Technology 260 (2014) 97-106.10.1016/j.surfcoat.2014.08.078Search in Google Scholar

35. Koch C.C., Synthesis of nanostructured materials by mechanical milling: problems and opportunities, Nanostructured Materials 9 (1997) 13-22.10.1016/S0965-9773(97)00014-7Search in Google Scholar

36. Łatka L., Cattini A., Chicot D., Pawłowski L., Kozerski S., Petit F., Denoirjean A., Mechanical properties of yttria- and ceria-stabilized zirconia coatings obtained by suspension plasma spraying, Journal of Thermal Spray Technology 22 (2013) 125-130.10.1007/s11666-012-9874-7Search in Google Scholar

37. Suryanarayana C., Mechanical alloying and milling, Progress in Materials Science 46 (2001) 1-184.10.1016/S0079-6425(99)00010-9Search in Google Scholar

38. Movahedi B., Enayati M.H., Thermal spray coatings of Ni-10 wt.% Al composite powder synthesised by low energy mechanical milling, Surface Engineering 25 (2009) 276-283.10.1179/174329408X281830Search in Google Scholar

39. Rampon R., Marchand O., Filiatre C., Bertrand G., Influence of suspension characteristics on coatings microstructure obtained by suspension plasma spraying, Surface and Coatings Technology 202 (2008) 4337-4342.10.1016/j.surfcoat.2008.04.006Search in Google Scholar

40. Toma F.-L., Bertrand G., Begin-Colin S., Meunier C., Odile B., Klein D., Coddet C., Microstructure and environmental functionalities of TiO2-supported photocatalysts obtained by suspension plasma spraying, Applied Catalysis B Environmental 68 (2006) 74-84.10.1016/j.apcatb.2006.07.009Search in Google Scholar

41. Kassner H., Vassen R., Stoever D., Study on instant droplet and particle stages during suspension plasma spraying, Surface and Coatings Technology 202 (2008) 4355-4361.10.1016/j.surfcoat.2008.04.009Search in Google Scholar

42. Larson R.G., The structure and rheology of complex fluids, Oxford University Press, New York, 1999.Search in Google Scholar

43. Mueller S., Llewellin E.W., Mader H.M., The rheology of suspensions of solid particles, Proceedings of the Royal Society A - Mathematical, Physical and Engineering Series 466 (2010) 1201-1228.Search in Google Scholar

44. Wang Z., Ni Z., Qiu D., Tao G., Yang P., Characterization of stability of ceramic suspension for slurry introduction in inductively coupled plasma optical emission spectrometry and application to aluminium nitride analysis, Journal of Analytical Atomic Spectroscopy 20 (2005) 315-319.10.1039/b415632cSearch in Google Scholar

45. Michalak M., Łatka L., Sokołowski P., Feedstock preparation for suspension plasma spraying, Spajanie 37 (2017) 54-58 (in Polish).Search in Google Scholar

46. Otterstedt J.A., Small particles technology [in] Dispersabilite, A. Foissy, S.A. Bachiri (eds.), EDP Sciences, Les Ulis, 2003.Search in Google Scholar

47. Waldbillig S., Kesler O., The effect of solids and dispersant loadings on the suspension viscosities and deposition rates of suspension plasma sprayed YSZ coatings, Surface and Coatings Technology 203 (2009) 2098-2101.10.1016/j.surfcoat.2008.11.027Search in Google Scholar

48. Killinger A., Status and future trends in suspension plasma spraying [in] Future development of thermal spray coatings, N. Espallargas [ed.], Woodhead Publishing, Cambridge, 2015.10.1016/B978-0-85709-769-9.00004-XSearch in Google Scholar

49. Hurevich V., Smurov I., Pawłowski L., Theoretical study of the powder behavior of porous particles in a flame during plasma spraying, Surface and Coatings Technology 151-152 (2002) 370-376.10.1016/S0257-8972(01)01594-8Search in Google Scholar

50. Killinger A., Gadow R., Mauer G., Guignard A., Vassen R., Stoever D., Review of new developments in suspension and solution precursor thermal spray processes, Journal of Thermal Spray Technology 20 (2011) 677-695.10.1007/s11666-011-9639-8Search in Google Scholar

51. Fauchais P., Joulia A., Goutier S., Chazelas C., Vardelle M., Vardelle A., Rossigniol S., Suspension and solution plasma spraying, Journal of Physics D: Applied Physics 46 (2013) 1-14.Search in Google Scholar

52. Kozerski S., Pawłowski L., Jaworski R., Roudet F., Petit F., Two zones microstructure of suspension plasma sprayed hydroxyapatite coatings, Surface and Coatings Technology 204 (2010) 1380-1387.10.1016/j.surfcoat.2009.09.020Search in Google Scholar

53. Łatka L., Goryachev S.B., Kozerski S., Pawłowski L., Sintering of fine particles in suspension plasma sprayed coatings, Materials 3 (2010) 3845-3866.10.3390/ma3073845544579528883314Search in Google Scholar

54. Łatka L., Goryachev S.B., Kozerski S., Pawłowski L., Lampke T., Buildup mechanisms of suspension plasma sprayed ZrO2 + 8 wt.% Y2O3 coatings, Proceedings International Thermal Spray Conference, Hamburg, Germany, 2011.10.31399/asm.cp.itsc2011p0104Search in Google Scholar

55. Sokołowski P., Pawłowski L., Dietrich D., Lampke T., Jech D., Advanced microscopic study of suspension plasma sprayed zirconia coatings with different microstructures, Journal of Thermal Spray Technology 25 (2015) 94-104.10.1007/s11666-015-0310-7Search in Google Scholar

56. Pateyron B., Pawłowski L., Calve N., Delluc G., Denoirjean A., Modeling of occurring in plasma jet during suspension spraying of hydroxyapatite coatings, Surface and Coatings Technology 214 (2013) 86-90.10.1016/j.surfcoat.2012.11.006Search in Google Scholar

57. Bernard B., Quet A., Bianchi L., Joulia A., Malie A., Schick V., Remy B., Thermal insulation properties of YSZ coatings: Suspension Plasma Spraying (SPS) versus Electron Beam Physical Vapor Deposition (EB-PVD) and Atmospheric Plasma Spraying (APS), Surface and Coatings Technology 318 (2017) 122-128.Search in Google Scholar

58. Sokołowski P., Nylen P., Musalek R., Łatka L., Kozerski S., Dietrich D., Lampke T., Pawłowski L., The microstructural studies of suspension plasma sprayed zirconia coatings with the use of high-energy plasma torches, Surface and Coatings Technology 318 (2017) 250-261.10.1016/j.surfcoat.2017.03.025Search in Google Scholar

59. Ganvir A., Joshi S., Markocsan N., Vassen R., Tailoring columnar microstructure of axial suspension plasma sprayed TBCs for superior thermal shock performance, Materials and Design 144 (2018) 192-208.10.1016/j.matdes.2018.02.011Search in Google Scholar

60. Oliker V.E., Terent’ev A.E., Shvedova L.K., Martsenyuk I.S., Use of aqueous suspensions in plasma spraying of alumina coatings, Powder Metallurgy and Metal Ceramics 48 (2009) 115-120.10.1007/s11106-009-9085-zSearch in Google Scholar

61. Tingaud O., Bertrand P., Bertrand G., Microstructure and tribological behavior of suspension plasma sprayed Al2O3 and Al2O3-YSZ composite coatings, Surface and Coatings Technology 205 (2010) 1004-1008.10.1016/j.surfcoat.2010.06.003Search in Google Scholar

62. Darut G., Valette S., Montavon G., Ageorges H., Denoirjean A., Fauchais P., Klyatskina E., Segova F., Salvador M.D., Comparison of Al2O3 and Al2O3-TiO2 coatings manufactured by aqueous and alcoholic suspension plasma apraying, Thermal Spray: Global Solutions for Future Application, 2010, Singapore, DVS Media, Dusseldorf, Germany, 2010, pp. 212-217.10.31399/asm.cp.itsc2010p0197Search in Google Scholar

63. Łatka L., Pawłowski L., Chicot D., Pierlot C., Petit F., Mechanical properties of suspension plasma sprayed hydroxyapatite coatings submitted to simulated body fluid, Surface and Coatings Technology 205 (2010) 954-960.10.1016/j.surfcoat.2010.06.025Search in Google Scholar

64. Kozerski S., Łatka L., Pawłowski L., Cernuschi F., Petit F., Pierlot C., Podlesak H., Laval J.P., Preliminary studies on suspension plasma sprayed ZrO2 + 8 wt.% Y2O3 coatings, Journal of the European Ceramic Society 31 (2011) 2089-2098.10.1016/j.jeurceramsoc.2011.05.014Search in Google Scholar

65. Carpio P., Bannier E., Salvador M.D., Borrell A., Moreno R., Sanchez E., Effect of particle size distribution of suspension feedstock on the microstructure and mechanical properties of suspension plasma spraying YSZ coatings, Surface and Coatings Technology, 268 (2015) 293-297.Search in Google Scholar

66. Zhou D., Guillon O., Vassen R., Development of YSZ thermal barrier coatings using axial suspension plasma spraying, Coatings 7 (2017) 1-17.Search in Google Scholar

67. Ma X., Ruggiero P., Practical aspects of suspension plasma spray of thermal barrier coatings of potential gas turbine components, Journal of Thermal Spray Technology 27 (2018) 591-602.10.1007/s11666-018-0700-8Search in Google Scholar

68. Parker W.J., Jenkins R.J., Butler C.P., Abbot G.L., Flash method of determining thermal diffusivity, heat capacity and thermal conductivity, Journal of Applied Physics 32 (1961) 1679-1684.10.1063/1.1728417Search in Google Scholar

69. Łatka L., Cattini A., Pawłowski L., Valette S., Pateyron B., Lecompte J.-P., Kumar R., Denoirjean A., Thermal diffusivity and conductivity of yttria stabilized zirconia coatings obtained by suspension plasma spraying, Surface and Coatings Technology 208 (2012) 87-91.10.1016/j.surfcoat.2012.08.014Search in Google Scholar

70. 70. Ganvir A., Curry N., Markocsan N., Nylen P., Toma F.-L., Comparative study of suspension plasma sprayed and suspension high velocity oxy-fuel sprayed YSZ thermal barrier coatings, Surface and Coatings Technology 268 (2015) 70-76.10.1016/j.surfcoat.2014.11.054Search in Google Scholar

71. Bernard B., Schick V., Remy B., Quet A., Bianchi L., High Temperature Thermal Properties of Columnar Yttria Stabilized Zirconia Thermal Barrier Coating Performed by Suspension Plasma Spraying, Journal of Physics: Conference Series 745 (2016).10.1088/1742-6596/745/3/032012Search in Google Scholar

72. Ganvir A., Curry N., Bjorklund S., Markocsan N., Nylen P., Characterization of Microstructure and Thermal Properties of YSZ Coatings Obtained by Axial Suspension Plasma Spraying (ASPS), Journal of Thermal Spray Technology 24 (2015) 1195-1204.10.1007/s11666-015-0263-xSearch in Google Scholar

73. Fan W., Bai Y., Li J.R., Gao Y., Chen H.Y., Kang Y.X., Shi W.J., Li B.Q., Microstructural design and properties of supersonic suspension plasma sprayed thermal barrier coatings, Journal of Alloys and Compounds 699 (2017) 763-774.10.1016/j.jallcom.2016.12.356Search in Google Scholar

74. Zhai M., Li D., Zhao Y., Zhong X., Shao F., Zhao H., Liu C., Tao S., Comparative study on thermal shock behavior of thick thermal barrier coatings fabricated with nano-based YSZ suspension and agglomerated particles, Ceramics International 42 (2016) 12172-12179.10.1016/j.ceramint.2016.04.153Search in Google Scholar

75. Curry N., Tang Z., Markocsan N., Nylen P., Influence of bond coat surface roughness on the structure of axial suspension plasma spray thermal barrier coatings - thermal and lifetime performance, Surface and Coatings Technology 268 (2015) 15-23.10.1016/j.surfcoat.2014.08.067Search in Google Scholar

76. Gupta M., Design of thermal barrier coatings, a modeling approach, Springer, London, 2015.10.1007/978-3-319-17254-5Search in Google Scholar

77. Fan W., Bai Y., Review of suspension and solution precursor plasma sprayed thermal barrier coatings, Ceramics International 42 (2016) 14299-14312.10.1016/j.ceramint.2016.06.063Search in Google Scholar

78. Ma W., Jarligo M.O., Mack D.E., Pitzer D., Malzbender J., Vassen R., Stoever D., New generation perovskite thermal barrier coatings materials, Journal of Thermal Spray Technology 17 (2008) 831-837.10.1007/s11666-008-9239-4Search in Google Scholar

79. Habidi M.H., Wang L., Liang J., Guo S.M., An investigation on hot corrosion behavior of YSZ-Ta2O5 in Na2SO4 + V2O5 salt at 1100ºC, Corrosion Science 75 (2013) 409-414.10.1016/j.corsci.2013.06.025Search in Google Scholar

80. Mauer G., Jarligo M.O., Mack D.E., Vassen R., Plasma-sprayed thermal barrier coatings: new materials, processing issues and solutions, Journal of Thermal Spray Technology 22 (2013) 646-658.10.1007/s11666-013-9889-8Search in Google Scholar

81. Cao X.Q., Vassen R., Stover D., Ceramic materials for thermal barrier coatings, Journal of the European Ceramic Society 24 (2004) 1-10.10.1016/S0955-2219(03)00129-8Search in Google Scholar

82. Wu J., Wei X., Padture N.P., Klemens P.G., Gell M., Garcia E., Miranzo P., Osendi M.I., Low thermal conductivity rare-earth zirconates for potential thermal barrier coating applications, Journal of the American Ceramic Society 85 (2002) 3031-3035.Search in Google Scholar

83. Zhu D., Miller R.A., Development of advanced low conductivity thermal barrier coatings, International Journal of Applied Ceramic Technology 1 (2004) 86-94.10.1111/j.1744-7402.2004.tb00158.xSearch in Google Scholar

84. Gong S., VanEvery K., Wang H., Trice R.W., Microstructure and thermal properties of inflight rare-earth doped thermal barriers prepared by suspension plasma spray, Journal of the European Ceramic Society 34 (2014) 1243-1253.10.1016/j.jeurceramsoc.2013.11.016Search in Google Scholar

85. Wang C., Wang Y., Wang L., Hao G., Sun X., Shan F., Zou Z., Nanocomposite lanthanum zirconate thermal barrier coating deposited by suspension plasma spray process, Journal of Thermal Spray Technology 23 (2014) 1030-1036.10.1007/s11666-014-0068-3Search in Google Scholar

86. Vassen R., Traeger F., Stoever D., New thermal barrier coatings based on pyrochlore/YSZ double-layer systems, International Journal of Applied Ceramic Technology 1 (2004) 351-361.10.1111/j.1744-7402.2004.tb00186.xSearch in Google Scholar

87. Bakan E., Vassen R., Ceramic top coats of plasma-sprayed thermal barrier coatings: materials, processes and properties, Journal of Thermal Spray Technology 26 (2017) 992-1010.10.1007/s11666-017-0597-7Search in Google Scholar

88. Mahade S., Curry N. Bjorklund S., Markocsan N., Nylen P., Thermal conductivity and thermal cyclic fatigue of multilayered Gd2Zr2O7/YSZ thermal barrier coatings processed by suspension plasma spray, Surface and Coatings Technology 283 (2015) 329-336.10.1016/j.surfcoat.2015.11.009Search in Google Scholar

89. 89. Mahade S., Curry N. Bjorklund S., Markocsan N., Nylen P., Vassen R., Functional performances of Gd2Zr2O7/YSZ multi-layered thermal barrier coatings deposited by suspension plasma spray, Surface and Coatings Technology 318 (2017) 208-216.10.1016/j.surfcoat.2016.12.062Search in Google Scholar

90. Schlegel N., Sebold D., Sohn Y.J., Mauer G., Vassen R., Cycling performance of a columnar-structured complex perovskite in a temperature gradient test, Journal of Thermal Spray Technology 24 (2015) 1205-1212.10.1007/s11666-015-0254-ySearch in Google Scholar

91. Wang C., Wang Y., Fan S., You Y., Wang L., Yang C., Sun X., Li X., Optimized functionally graded La2Zr2O7/8YSZ thermal barrier coatings fabricated by suspension plasma spraying, Journal of Alloys and Compounds 649 (2015) 1182-1190.10.1016/j.jallcom.2015.05.290Search in Google Scholar

92. Mahade S., Curry N. Bjorklund S., Markocsan N., Nylen P., Engineered thermal barrier coatings deposited by suspension plasma spray, Materials Letters 209 (2017) 517-521.10.1016/j.matlet.2017.08.096Search in Google Scholar

93. Carpio P., Salvador M.D., Borrel A., Navarro L., Sanchez E., Molten salt attack on multilayer and functionally-graded YSZ coatings, Ceramic International 44 (2018) 12634-12641.10.1016/j.ceramint.2018.04.062Search in Google Scholar

94. Curry N., Design of thermal barrier coatings, PhD Thesis, University West, Sweden, 2014.Search in Google Scholar

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