• Chinese Journal of Lasers
  • Vol. 50, Issue 4, 0402002 (2023)
Lei Sun1、2、3, Yujia Guo1、2、3, Panpan Zhang1、2、3、*, Rong Liu4, Qunli Zhang1、2、3, and Jianhua Yao1、2、3
Author Affiliations
  • 1Institute of Laser Advanced Manufacturing, Zhejiang University of Technology, Hangzhou 310023, Zhejiang, China
  • 2School of Mechanical Engineering, Zhejiang University of Technology, Hangzhou 310023, Zhejiang, China
  • 3Collaborative Innovation Center of High-End Laser Manufacturing Equipment (National 2011 Plan ), Zhejiang University of Technology, Hangzhou 310023, Zhejiang, China
  • 4Department of Mechanical and Aerospace Engineering, Carleton University, Ottawa KIS 5B6, Canada
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    DOI: 10.3788/CJL220433 Cite this Article Set citation alerts
    Lei Sun, Yujia Guo, Panpan Zhang, Rong Liu, Qunli Zhang, Jianhua Yao. Hot Corrosion Resistance of 8YSZ Thermal Barrier Coating Modified by Laser Alloying[J]. Chinese Journal of Lasers, 2023, 50(4): 0402002 Copy Citation Text show less
    References

    [1] Clarke D R, Oechsner M, Padture N P. Thermal-barrier coatings for more efficient gas-turbine engines[J]. MRS Bulletin, 37, 891-898(2012).

    [2] Witz G, Schaudinn M, Sopka J et al. Development of advanced thermal barrier coatings with improved temperature capability[J]. Journal of Engineering for Gas Turbines and Power, 139, 081901(2017).

    [3] Chen Z, Jin G, Cui X F et al. Research progress on marine adaptability of ceramic based materials for thermal barrier coating of marine gas turbine[J]. Aeronautical Manufacturing Technology, 64, 45-58(2021).

    [4] Godiganur V S, Nayaka S, Kumar G N. Thermal barrier coating for diesel engine applicationa review[J]. Materials Today: Proceedings, 45, 133-137(2021).

    [5] Yuan T, Wang S X, He Q et al. Development of suspension plasma spray thermal barrier coatings[J]. Surface Technology, 48, 18-27(2019).

    [6] Liu B, Liu Y C, Zhu C H et al. Advances on strategies for searching for next generation thermal barrier coating materials[J]. Journal of Materials Science & Technology, 35, 833-851(2019).

    [7] Wang B, Liu Y, Wang F D et al. Research and application of thermal barrier coatings for aeroengine and gas turbine blades[J]. Aeroengine, 47, 25-31(2021).

    [8] Zhang W W, Li G R, Zhang Q et al. Multiscale pores in TBCs for lower thermal conductivity[J]. Journal of Thermal Spray Technology, 26, 1183-1197(2017).

    [9] Zhang T Y, Wu C, Xiong Z et al. Research progress in materials and preparation techniques of thermal barrier coatings[J]. Laser & Optoelectronics Progress, 51, 030004(2014).

    [10] Zhang H S, Geng G Q, Du K K et al. Application of thermal-spraying and electron beam physical vapor deposition technologies on preparation of thermal barrier coatings[J]. Materials Review, 23, 98-101, 106(2009).

    [11] Khajezadeh M H, Mohammadi M, Ghatee M. Hot corrosion performance and electrochemical study of CoNiCrAlY/YSZ/YSZ-La2O3 multilayer thermal barrier coatings in the presence of molten salt[J]. Materials Chemistry and Physics, 220, 23-34(2018).

    [12] Afrasiabi A, Saremi M, Kobayashi A. A comparative study on hot corrosion resistance of three types of thermal barrier coatings: YSZ, YSZ + Al2O3 and YSZ/Al2O3[J]. Materials Science and Engineering: A, 478, 264-269(2008).

    [13] Evans A G, Mumm D R, Hutchinson J W et al. Mechanisms controlling the durability of thermal barrier coatings[J]. Progress in Materials Science, 46, 505-553(2001).

    [14] Zhao P S, Cao X P, Zheng H Z et al. Research progress of rare earth doped thermal barrier coatings[J]. Journal of Aeronautical Materials, 41, 83-95(2021).

    [15] Pang M, Zhang X H. Effect of structural parameters on the residual stress of Mo/8YSZ functionally graded thermal barrier coating prepared by plasma spraying[J]. Journal of Aeronautical Materials, 40, 23-32(2020).

    [16] Li R W, Gong W B. Investigation on failure mechanism of nanostructured 8%ZrO2-Y2O3 thermal barrier coating[J]. Journal of Ceramics, 37, 663-667(2016).

    [17] Ren L S, Chen H, Chen Y et al. Microstructures and thermal fatigue performance of 24CrNiMo alloy steel formed by selective laser melting[J]. Chinese Journal of Lasers, 48, 2202004(2021).

    [18] Tong B Q, Li Z X, Zhang Q L et al. Microstructure and corrosion resistance of laser B4C/Cr alloyed layer of GCr15 steel[J]. Chinese Journal of Lasers, 48, 1002119(2021).

    [19] Yao J H, Huang J B, Wang G H et al. Pulsed laser polishing mechanism on high roughness surface cut by wire electrical discharge machining[J]. Chinese Journal of Lasers, 48, 1402003(2021).

    [20] Arshad A, Yajid M A M, Idris M H. Microstructural characterization of modified plasma spray LZ/YSZ thermal barrier coating by laser glazing[J]. Materials Today: Proceedings, 39, 941-946(2021).

    [21] Zhou Y B, Qin Y, Yang S. Thermal shock resistance and laser rapid prototyping of thermal barrier coatings with network structures[J]. Laser & Optoelectronics Progress, 55, 021412(2018).

    [22] Batista C, Portinha A, Ribeiro R M et al. Morphological and microstructural characterization of laser-glazed plasma-sprayed thermal barrier coatings[J]. Surface and Coatings Technology, 200, 2929-2937(2006).

    [23] Soleimanipour Z, Baghshahi S, Shoja-Razavi R et al. Hot corrosion behavior of Al2O3 laser clad plasma sprayed YSZ thermal barrier coatings[J]. Ceramics International, 42, 17698-17705(2016).

    [24] Gu Z J, Lei J B, Dou J Y et al. High-temperature oxidation resistance mechanism and thermal shock performance of CoCrTaAlY/YSZ thermal barrier coatings fabricated using plasma spraying and laser cladding[J]. Chinese Journal of Lasers, 46, 0802007(2019).

    [25] Yan Z, Guo L, Li Z H et al. Effects of laser glazing on CMAS corrosion behavior of Y2O3 stabilized ZrO2 thermal barrier coatings[J]. Corrosion Science, 157, 450-461(2019).

    [26] Derelioglu Z, Carabat A L, Song G M et al. On the use of B-alloyed MoSi2 particles as crack healing agents in yttria stabilized zirconia thermal barrier coatings[J]. Journal of the European Ceramic Society, 35, 4507-4511(2015).

    [27] Ouyang T Y, Suo J P. TiC-self-healing thermal barrier coating structures and oxidation resistance[J]. Surface and Coatings Technology, 412, 127065(2021).

    [28] Sun X X, Chen H F, Yang G et al. YSZ-Ti3AlC2 thermal barrier coating and its self-healing behavior under high temperatures[J]. Journal of Inorganic Materials, 32, 1269-1274(2017).

    [29] Shen Z J, Zhang Y N, Yu X H. Interfacial microstructure evolution mechanism of high temperature oxidation-resistant Al-based coating on Ti alloy surface[J]. Materials Research Express, 6, 086472(2019).

    [30] Gu J J, Joshi S S, Ho Y S et al. Oxidation-induced healing in laser-processed thermal barrier coatings[J]. Thin Solid Films, 688, 137481(2019).

    [31] Zhang P P, Li F H, Zhang X F et al. Thermal shock resistance of thermal barrier coatings with different surface shapes modified by laser remelting[J]. Journal of Thermal Spray Technology, 28, 417-432(2019).

    [32] Zhang G, Liang Y. Progress and research of laser prepared thermal barrier coatings[J]. Journal of Shenyang Institute of Technology, 19, 1-7(2000).

    [33] Chang F, Zhou K S, Tong X et al. Microstructure and thermal shock resistance of the peg-nail structured TBCs treated by selective laser modification[J]. Applied Surface Science, 317, 598-606(2014).

    [34] Wang D S, Tian Z J, Yang B et al. Preparation and solid particle erosion behaviors of plasma-sprayed and laser-remelted ZrO2-7wt.%Y2O3 thermal barrier coatings[J]. Applied Mechanics and Materials, 159, 191-197(2012).

    [35] Wu S, Zhao Y T, Li W G et al. Na2SO4 + NaCl molten salts corrosion mechanism of thermal barrier coatings used in ships[J]. Journal of Thermal Analysis and Calorimetry, 144, 2043-2056(2021).

    [36] Afrasiabi A, Saremi M, Kobayashi A. A comparative study on hot corrosion resistance of three types of thermal barrier coatings: YSZ, YSZ + Al2O3 and YSZ/Al2O3[J]. Materials Science and Engineering: A, 478, 264-269(2008).

    [37] Yang J, Kong L Y, Cui X Y et al. Preparation of TiAl3-Al composite coating by cold spraying and evaluation of its high temperature oxidation behavior[J]. Materials Protection, 45, 9-11, 72(2012).

    [38] Jiao X Y, Cai X P, Niu G et al. Rapid reactive synthesis of TiAl3 intermetallics by thermal explosion and its oxidation resistance at high temperature[J]. Progress in Natural Science: Materials International, 29, 447-452(2019).

    Lei Sun, Yujia Guo, Panpan Zhang, Rong Liu, Qunli Zhang, Jianhua Yao. Hot Corrosion Resistance of 8YSZ Thermal Barrier Coating Modified by Laser Alloying[J]. Chinese Journal of Lasers, 2023, 50(4): 0402002
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