Journal of Inorganic Materials, Volume. 39, Issue 6, 647(2024)
[3] WANG P, LIU F, WANG H et al. A review of third generation SiC fibers and SiCf/SiC composites[J]. Journal of Materials Science and Technology, 35, 2743(2019).
[5] HONG Z, CHENG L, ZHANG L et al. Water vapor corrosion behavior of scandium silicates at 1400 ℃[J]. Journal of the American Ceramic Society, 92, 193(2009).
[6] ZHOU Y C, ZHAO C, WANG F et al. Theoretical prediction and experimental investigation on the thermal and mechanical properties of bulk
[7] LEE K N, FOX D S, BANSAL N P. Rare earth silicate environmental barrier coatings for SiC/SiC composites and Si3N4 ceramics[J]. Journal of the European Ceramic Society, 25, 1705(2005).
[8] XU J, SARIN V K, DIXIT S et al. Stability of interfaces in hybrid EBC/TBC coatings for Si-based ceramics in corrosive environments[J]. International Journal of Refractory Metals and Hard Materials, 49: 339(2015).
[11] LEE K N, ZHU D, LIMA R S. Perspectives on environmental barrier coatings (EBCs) manufactured
[12] TEJERO-MARTIN D, BENNETT C, HUSSAIN T. A review on environmental barrier coatings: history, current state of the art and future developments[J]. Journal of the European Ceramic Society, 41, 1747(2021).
[18] FITZGERALD K, SHEPHERD D. Review of SiCf/SiCm corrosion, erosion and erosion-corrosion in high temperature helium relevant to GFR conditions[J]. Journal of Nuclear Materials, 498: 476(2018).
[22] AOKI Y, INOUE J, KAGAWA Y et al. A simple method for measurement of shear delamination toughness in environmental barrier coatings[J]. Surface and Coatings Technology, 321: 213(2017).
[24] YANG H, YANG Y, CAO X et al. Thermal shock resistance and bonding strength of tri-layer Yb2SiO5/mullite/Si coating on SiCf/SiC composites[J]. Ceramics International, 46, 27292(2020).
[25] JANG B K, NAGASHIMA N, KIM S et al. Mechanical properties and microstructure of Yb2SiO5 environmental barrier coatings under isothermal heat treatment[J]. Journal of the European Ceramic Society, 40, 2667(2020).
[26] ZHANG X F, ZHOU K S, LIU M et al. Preparation of Si/Mullite/Yb2SiO5 environment barrier coating (EBC) by plasma spray-physical vapor deposition (PS-PVD)[J]. Journal of Inorganic Materials, 33, 325(2018).
[28] UENO S, OHJI T. Development of environmental barrier coatings for non-oxide ceramics[J]. Advances in Applied Ceramics, 122, 101(2023).
[30] XIAO S K, LI J Z, HUANG P X et al. Evaluation of environmental barrier coatings: a review[J]. International Journal of Applied Ceramic Technology, 20, 2055(2023).
[31] PAKSOY A H, XIAO P. Review of processing and design methodologies of environmental barrier coatings for next generation gas turbine applications[J]. Advances in Applied Ceramics(2023).
[32] TOHER C, RIDLEY M J, TOMKO K Q et al. Design rules for the thermal and elastic properties of rare-earth disilicates[J]. Materialia, 28: 101729(2023).
[33] LV X R, LEI Y M, ZHANG Z et al. Accelerating the design of multicomponent rare earth silicates for SiCf/SiC CMC by combinatorial material chip design and high throughput screening[J]. Journal of Materials Science and Technology, 150: 96(2023).
[34] ZHENG T, WANG S, XU B S et al. A study of fracture toughness and thermal property of nanostructured Yb2SiO5 environmental barrier coatings[J]. Journal of Materials Research and Technology, 26: 4436(2023).
[35] RIDLEY M, GARCIA E, KANE K et al. Environmental barrier coatings on enhanced roughness SiC: effect of plasma spraying conditions on properties and performance[J]. Journal of the European Ceramic Society, 43, 6473(2023).
[36] ZHANG M, LIU R X, MIAO Q et al. Microstructure and mechanical properties evolution in tri-layer Si-HfO2/ Yb2Si2O7/Yb2SiO5 environmental barrier coating by PS-PVD during post-annealing[J]. Ceramics International, 49, 40435(2023).
[37] LV K Y, DONG S J, HUANG Y et al. Influence of post heat treatment on the high-temperature performances of multi-layered thermal/environmental barrier coatings on SiC-based composites[J]. Ceramics International, 49, 28130(2023).
[38] OKAWA A, NGUYEN S T, WIFF J P et al. Self-healing ability, strength enhancement, and high-temperature oxidation behavior of silicon carbide-dispersed ytterbium disilicate composite for environmental barrier coatings under isothermal heat treatment[J]. Journal of the European Ceramic Society, 42, 6170(2022).
[39] ABDUL-AZIZ A. Durability modeling review of thermal- and environmental-barrier-coated fiber-reinforced ceramic matrix composites part i.[J]. Materials, 11, 1251(2018).
[40] DEIJKERS J A, BEGLEY M R, WADLEY H N G. Failure mechanisms in model thermal and environmental barrier coating systems[J]. Journal of the European Ceramic Society, 42, 5129(2022).
[41] DU J P, LIU R J, WAN F et al. Failure mechanism of ytterbium silicate/silicon bi-layer environmental barrier coatings on SiCf/SiC composites upon long-time water vapor and oxygen corrosion test[J]. Surface and Coating Technology, 447: 128871(2022).
[42] ARCHER T, BERNY M, BEAUCHêNE P et al. Creep behavior identification of an environmental barrier coating using full-field measurements[J]. Journal of the European Ceramic Society, 40, 5704(2020).
[43] BAKAN E, MACK D E, LOBE S et al. An investigation on burner rig testing of environmental barrier coatings for aerospace applications[J]. Journal of the European Ceramic Society, 40, 6236(2020).
[44] TIAN Z, ZHENG L, WANG J et al. Theoretical and experimental determination of the major thermo-mechanical properties of RE2SiO5(RE = Tb, Dy, Ho, Er, Tm, Yb, Lu, and Y) for environmental and thermal barrier coating applications[J]. Journal of the European Ceramic Society, 36, 189(2016).
[45] HAO S, OLEKSAK R P, DOĞAN Ö N et al. Low-cost thermal/environmental barrier coatings: a first-principles study[J]. Computational Materials Science, 230: 112541(2023).
[46] HEVERAN C M, XU J, SARIN V K et al. Simulation of stresses in TBC-EBC coating systems for ceramic components in gas turbines[J]. Surface and Coating Technology, 235, 354(2013).
[47] SUZUKI M, SHAHIEN M, SHINODA K et al. The current status of environmental barrier coatings and future direction of thermal spray process[J]. Materials Transactions, 63, 1101(2022).
[48] ABDUL-AZIZ A, WROBLEWSKI A C. Durability analysis and experimental validation of environmental barrier coating (EBC) performance using combined digital image correlation and NDE.[J]. Coatings, 70: 1(2016).
[49] WANG L, WANG Y, ZHANG W Q et al. Finite element simulation of stress distribution and development in 8YSZ and double-ceramic-layer La2Zr2O7/8YSZ thermal barrier coatings during thermal shock[J]. Applied Surface Science, 258, 3540(2012).
[50] ZHANG J, GUO X, JUNG Y G et al. Lanthanum zirconate based thermal barrier coatings: a review[J]. Surface and Coating Technology, 323: 18(2017).
[51] NAIR S V, EATON H E, SUN E Y. Measurements of interface strength and toughness in shear of environmental barrier coatings on ceramic substrates at ambient and at elevated temperature[J]. Surface and Coating Technology, 200, 5175(2006).
[52] ROBERTSON A L, SOLA F, ZHU D M et al. Microscale fracture mechanisms of HfO-Si environmental barrier coatings[J]. Journal of the European Ceramic Society, 39, 2409(2019).
[53] KASSEM R, AL NASIRI N. A comprehensive study on the mechanical properties of Yb2SiO5 as a potential environmental barrier coating[J]. Surface and Coating Technology, 426: 127783(2021).
[54] KAKISAWA H, NISHIMURA T, YOKOI T et al. Measurement of the in-plane coefficient of thermal expansion of ceramic protective coatings from room temperature to 1400 °C[J]. Surface and Coating Technology, 439: 128427(2022).
[55] YE C, JIANG P. Accurate residual stress measurement as a function of depth in environmental barrier coatings
[56] SLEEPER J, GARG A, WIESNER V L et al. Thermochemical interactions between CMAS and Ca2Y8(SiO4)6O2 apatite environmental barrier coating material[J]. Journal of the European Ceramic Society, 39, 5380(2019).
[57] STOLZENBURG F, KENESEI P, ALMER J et al. The influence of calcium-magnesium-aluminosilicate deposits on internal stresses in Yb2SiO5 multilayer environmental barrier coatings[J]. Acta Materialia, 105: 189(2016).
[58] EL SHAFEI K, KASSEM R, AL NASIRI N. Diffusion behaviour and corrosion rate of rare earth monosilicate-based EBCs under CMAS exposure[J]. Ceramics International, 49, 38544(2023).
[59] HARDER B J, STOKES J L, KOWALSKI B A et al. Steam oxidation performance of Yb2Si2O7 environmental barrier coatings exposed to CMAS[J]. Journal of the European Ceramic Society, 44, 2486(2024).
[60] KIM S H, OSADA T, MATSUSHITA Y et al. CMAS corrosion behavior of dual-phase composite Gd2Si2O7/Sc2Si2O7 as a promising EBC material[J]. Journal of the European Ceramic Society, 43, 6440(2023).
[61] TEJERO-MARTIN D, ROMERO A R, WELLMAN R G et al. Interaction of CMAS on thermal sprayed ytterbium disilicate environmental barrier coatings: a story of porosity[J]. Ceramics International, 48, 8286(2022).
[62] GODBOLE E P, HEWAGE N, VON DER HANDT A et al. Quantifying the efficiency of reactions between silicate melts and rare earth aluminate-zirconate T/EBC materials[J]. Journal of the European Ceramic Society, 43, 5626(2023).
[63] LEE K N, GARG A, JENNINGS W D. Effects of the chemistry of coating and substrate on the steam oxidation kinetics of environmental barrier coatings for ceramic matrix composites[J]. Journal of the European Ceramic Society, 41, 5675(2021).
[64] PRESBY M J, HARDER B J. Solid particle erosion of a plasma spray-physical vapor deposition environmental barrier coating in a combustion environment[J]. Ceramics International, 47, 24403(2021).
[65] BHATT R T, CHOI S R, COSGRIFF L M et al. Impact resistance of environmental barrier coated SiC/SiC composites[J]. Materials Science and Engineering: A, 476, 8(2008).
[66] KEDIR N, GARCIA E, KIRK C et al. Impact damage of narrow silicon carbide (SiC) ceramics with and without environmental barrier coatings (EBCs) by various foreign object debris (FOD) simulants[J]. Surface and Coatings Technology, 407: 126779(2021).
[67] HU Q, WANG Y C, GUO X J et al. Oxidation resistance of SiC/SiC composites with three-layer environmental barrier coatings up to 1360 °C in air atmosphere[J]. Ceramics International, 48, 9610(2022).
[68] HU Q, ZHOU X, TU Y W et al. High-temperature mechanical properties and oxidation resistance of SiCf/SiC ceramic matrix composites with multi-layer environmental barrier coatings for turbine applications[J]. Ceramics International, 47, 30012(2021).
[69] APPLEBY M P, ZHU D M, MORSCHER G N. Mechanical properties and real-time damage evaluations of environmental barrier coated SiC/SiC CMCs subjected to tensile loading under thermal gradients[J]. Surface & Coatings Technology., 284: 318(2015).
[70] QUAN H F, WANG L Y, HUANG J T et al. Durable protection and failure mechanism of the multilayer coating system for SiC/SiC composites under high-temperature oxidation[J]. Composites Part B: Engineering, 244: 110197(2022).
[71] RAMACHANDRAN K, CHAFFEY B, ZUCCARINI C et al. Experimental and mathematical modelling of corrosion behaviour of CMAS coated oxide/oxide CMCs[J]. Ceramics International, 49, 4213(2023).
[72] LI B, FAN X L, ZHOU K et al. A semi-analytical model for predicting stress evolution in multilayer coating systems during thermal cycling[J]. International Journal of Mechanical Sciences, 135: 31(2018).
[73] DU J K, YU G Q, JIA Y F et al. Numerical study of residual stresses in environmental barrier coatings with random rough geometry interfaces[J]. Ceramics International, 49, 5748(2023).
[74] DU J K, YU G Q, ZHOU S H et al. Effect of the thermally grown oxide and interfacial roughness on stress distribution in environmental barrier coatings[J]. Journal of the European Ceramic Society, 43, 7118(2023).
[75] HUANG Y P, WEI Z Y, ZHANG Q et al. Comprehensive understanding of coupled stress characteristics in ytterbium disilicate environmental barrier coatings undergoing corrosion transformation and thermal cycling[J]. Ceramics International, 48, 25528(2022).
[76] LV B, ZHUO X S, WANG C et al. Mechanisms of crack healing in dense Yb-Si-O environmental barrier coatings by plasma spray-physical vapor deposition[J]. Ceramics International, 48, 15975(2022).
[77] HUANG Y P, WEI Z Y, SUN J et al. Undulating and porous structure tuned surface cracking behavior of Yb2Si2O7environmental barrier coatings under steam cycling[J]. Journal of the European Ceramic Society, 43, 7644(2023).
[78] SUMMERS W D, BEGLEY M R, ZOK F W. Transition from penetration cracking to spallation in environmental barrier coatings on ceramic composites[J]. Surface and Coatings Technology, 378: 125083(2019).
[79] LIU R X, LIANG W P, MIAO Q et al. Micromechanical analysis and theoretical predictions towards thermal shock resistance of HfO2-Si environmental barrier coatings[J]. Composites Part B: Engineering, 226: 109334(2021).
[80] HATTIANGADI A, SIEGMUND T. An analysis of the delamination of an environmental protection coating under cyclic heat loads[J]. European Journal of Mechanics - A/Solids, 24, 361(2005).
[81] BAKAN E, VASSEN R. Oxidation kinetics of atmospheric plasma sprayed environmental barrier coatings[J]. Journal of the European Ceramic Society, 42, 5122(2022).
[82] SEHR S, COLLIER V, ZOK F et al. Oxide growth and stress evolution underneath cracked environmental barrier coatings[J]. Journal of the Mechanics and Physics of Solids, 175: 105275(2023).
[83] RICHARDS B T, SEHR S, DE FRANQUEVILLE F et al. Fracture mechanisms of ytterbium monosilicate environmental barrier coatings during cyclic thermal exposure[J]. Acta Materialia, 103: 448(2016).
[84] GRUJICIC M, SNIPES J, YAVARI R et al. Computational investigation of foreign object damage sustained by environmental barrier coatings (EBCs) and SiC/SiC ceramic-matrix composites (CMCs)[J]. Multidiscipline Modeling in Materials and Structures, 11, 238(2015).
[85] LV B, JIN X, CAO J et al. Advances in numerical modeling of environmental barrier coating systems for gas turbines[J]. Journal of the European Ceramic Society, 40, 3363(2020).
[86] MESQUITA-GUIMARãES J, GARCIA E, OSENDI M I et al. Effect of aging on the onset of cracks due to redistribution of residual stresses in functionally graded environmental barrier coatings of mullite/ZrO2[J]. Composites Part B: Engineering, 61: 199(2014).
[87] HARDER B J, ALMER J D, WEYANT C M et al. Residual stress analysis of multilayer environmental barrier coatings[J]. Journal of the American Ceramic Society, 92, 452(2009).
[88] YANG Z, LI W, CHEN Y et al. Life assessment of thermomechanical fatigue in a woven SiC/SiC ceramic matrix composite with an environmental barrier coating at elevated temperature[J]. International Journal of Fatigue, 172: 107584(2023).
[89] MURTHY P L N, NEMETH N N, BREWER D N et al. Probabilistic analysis of a SiC/SiC ceramic matrix composite turbine vane[J]. Composites Part B: Engineering, 39, 694(2008).
[90] FANG G, GAO X, SONG Y. A review on ceramic matrix composites and environmental barrier coatings for aero-engine: material development and failure analysis[J]. Coatings, 13, 357(2023).
[91] FANG G W, ZHONG Y, SUN J et al. Synergetic effect of coating properties and fibrous architecture on stress evolution in plain-woven ceramic matrix composites[J]. Composite Interfaces, 29, 141(2022).
[92] EVANS A G, HUTCHINSON J W. The mechanics of coating delamination in thermal gradients[J]. Surface and Coating Technology, 201, 7905(2007).
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Guangwu FANG, Haoyuan XIE, Huajun ZHANG, Xiguang GAO, Yingdong SONG.
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Received: Jan. 3, 2024
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Published Online: Jul. 31, 2024
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