[1] R. B. Hetnarski,Encyclopedia of Thermal Stresses, Springer Publish, ISBN 978-94-007-2738-0,2014. (備註:候選人的多層陶瓷塗層結構熱應力方面研究成果作為單獨一節“Modeling of Residual Stresses with Thermal Cycling”,被邀請收錄到最新的《熱應力百科全書》)
[1]W. G. Mao, Y. G. Shen, C. Lu, Deformation behavior and mechanical properties of polycrystalline and single crystal alumina during nanoindentation. Scripta Materialia, 2011, 65(2):127-130.(發表日期: 2011.03,影響因子3.747, the 25 Top Hottest Articles,他引40次)
[2]W. G. Mao, Y. C. Zhou, L. Yang, X. H. Yu, Modeling of residual stresses variation with thermal cycling in thermal barrier coatings, Mechanics of Materials, 2006, 38: 1118-1127.(發表日期: 2006.12,影響因子2.651,他引38次).
[3]W. G. Mao, Y. G. Shen, C. Lu, Nanoscale elastic-plastic deformation and stress distributions during nanoindentation in bulk sapphire single crystal, Journal of the European Ceramic Society, 2011; 31(10):1865-1871.(發表日期: 2011.09,影響因子3.411,他引36次)
[4]Q. Chen,W. G. Mao*, Y. C. Zhou, C. Lu, Effect of Young’s modulus evolution on residual stress measurement of thermal barrier coatings by XRD, Applied Surface Science, 2010, 256: 7311-7315.(*表示通訊作者;發表日期:2010.09,影響因子3.387,他引30次)
[5]W. G. Mao, C. Y. Dai, Y. C. Zhou, Q. X. Liu, An experimental investigation on thermo-mechanical buckling delamination failure characteristic of air plasma sprayed thermal barrier coatings, Surface and Coatings Technology, 2007, 201:6217-6227.(發表日期:2007.04,影響因子2.589,他引26次)
[6]L. Yang, Q. X. Liu, Y. C. Zhou,W. G. Mao, C. Lu. Finite element simulation on thermal fatigue of a turbine blade with thermal barrier coatings. Journal of Materials Science & Technology, 2014, 30(4):371-380.(發表日期:2014.04,影響因子2.764,他引25次)
[7]W. G. Mao*, J. P. Jiang, Y. C. Zhou, C. Lu, Effects of substrate curvature radius, thickness and deposition temperature on residual stresses in thermal barrier coatings, Surface & Coatings Technology, 2011, 205(8-9):3093-3102.(發表日期:2011.01,影響因子2.589,他引22次)
[8]W. G. Mao, C. Y. Dai, L. Yang, Q. X. Liu, Y. C. Zhou, Interface fracture characteristic and crack propagation investigations of thermal barrier coatings under tensile tests at elevated temperature, International Journal of Fracture, 2008, 151:107-120.(發表日期: 2008.06,影響因子2.247,他引22次)
[9]W. B. Yao, C. Y. Dai,W. G. Mao*, C. Lu, L. Yang, Y. C. Zhou. Acoustic emission analysis on tensile failure of air plasma-sprayed thermal barrier coatings. Surface and Coatings Technology, 2012, 206(18):3803-3807. (發表日期: 2012.05,影響因子2.589, the Top 25 Hottest Articles,他引18次)
[10]W. G. Mao*, J. Wan, C. Y. Dai, J. Ding, Y. Zhang, Y. C. Zhou, C. Lu. Evaluation of microhardness, fracture toughness and residual stress in a thermal barrier coating system: A modified Vickers indentation technique. Surface and Coatings Technology, 2012, 206(21):4455-4461. (發表日期:2012.07,影響因子2.589,他引17次)
[11]W. G. Mao, Y. G. Shen,Nanoindentation study of pop-in phenomenon characteristics and mechanical properties of sapphire (101bar2) crystal,Journal of the American Ceramic Society, 2012, 95(11):3605-3612. (發表日期: 2012.11,影響因子2.841,他引16次)
[12]W. G. Mao*, Q. Chen, L. Yang, Y. C. Zhou, C. Lu, Effects of piezo-spectroscopic coefficients of 8wt.% Y2O3stabilized ZrO2on residual stress measurement of thermal barrier coatings by Raman spectroscopy, Surface & Coatings Technology, 2010, 204: 3573-3577.(發表日期: 2010.08,影響因子2.589,他引13次)
[13] D. J. Wu,W. G. Mao*, Y. C. Zhou, C. Lu. Digital image correlation approach to cracking and decohesion in a brittle coating/ductile substrate system.Applied Surface Science, 2011, 257(14):6040-6043.(發表日期: 2011.03,影響因子3.387,他引10次)
[14] H. T. Liu, L. W. Yang, X. Sun, H. F. Cheng, C. Y. Wang,W. G. Mao,J. M. Molina-Aldareguia. Enhancing the fracture resistance of carbon fiber reinforced SiC matrix composites by interface modification through a simple fiber heat-treatment process. Carbon, 2016, 109:435-443.(發表日期: 2016.11,影響因子6.337,他引8次)
[15] X. S. Yang, J. Wan, C. Y. Dai, Y. Zhang,W. G. Mao *, Y. C. Zhou, C. Lu. Finite element analysis of crack propagation and fracture mechanical properties of freestanding 8wt.% Y2O3–ZrO2coatings. Surface and Coatings Technology, 2013, 223:87-91.(發表日期: 2013.05,影響因子2.589,他引8次)
[16] M. Zhou, W. B. Yao, X. S. Yang, Z. B. Peng, K. K. Li, C. Y. Dai,W. G. Mao *, Y. C. Zhou, C. Lu. In-situ and real-time tests on the damage evolution and fracture of thermal barrier coatings under tension: A coupled acoustic emission and digital image correlation method. Surface and Coatings Technology, 2014, 240:40-47.(發表日期:2014.02,影響因子2.589,他引7次)
[17] H. T. Liu, L. W. Yang, S. Han, H. F. Cheng,W. G. Mao, J. M. Molina-Aldareguía. Interface controlled micro- and macro- mechanical properties of aluminosilicate fiber reinforced SiC matrix composites. Journal of the European Ceramic Society, 2017, 37(3):883-890.(發表日期:2017.03,影響因子3.411,他引6次)
[18] J. Wan, M. Zhou, X. S. Yang, C. Y. Dai, Y. Zhang,W. G. Mao *, C. Lu. Fracture characteristics of freestanding 8wt% Y2O3–ZrO2coatings by single edge notched beam and Vickers indentation tests. Materials Science and Engineering: A, 2013, 581(0):140-144.(發表日期:2013.12,影響因子3.094,他引6次)
[19]W. G. Mao, Y. C. Zhou, Failure of thermal barrier ceramic coating induced by buckling due to temperature gradient and creep, Advance Materials Research, 2005, 9: 21-30.(發表日期:2005.09,他引5次)
[20] J. M. Luo, C. Y. Dai, Y. G. Shen,W. G. Mao*. Elasto-plastic characteristics and mechanical properties of as-sprayed 8mol% yttria-stabilized zirconia coating under nano-scales measured by nanoindentation. Applied Surface Science, 2014, 309(0):271-277.(發表日期:2012.08,影響因子3.387,他引4次)
[21]W. G. Mao, J. M. Luo, C. Y. Dai, Y. G. Shen.Effect of heat treatment on deformation and mechanical properties of 8mol% yttria-stabilized zirconia by Berkovich nanoindentation. Applied Surface Science, 2015, 338(0):92-98.(發表日期: 2015.05,影響因子3.387,他引3次)
[22]W. G. Mao*, D. J. Wu, W. B. Yao, M. Zhou, C. Lu, Multiscale monitoring of interface failure of brittle coating/ductile substrate systems: a non-destructive evaluation method combined digital image correlation with acoustic emission, Journal of Applied Physics, 2011, 110(8):084903.(發表日期: 2011.10,影響因子2.068,他引3次)
[23]W. G. Mao*, J. Chen, M. S. Si, R. F. Zhang, Z. B. Peng, C. Y. Dai, Q. S. Ma, D. N. Fang. Study of mechanical properties and cracking extension resistance behavior of C/SiC composites by single edge notched beam and digital image correlation techniques. Materials Science and Engineering: A, 2016, 649:222-228.(發表日期: 2016.01,影響因子3.094,他引2次)
[24] J. Luo, C. Y. Dai, Z. Wang, K. Liu,W. G. Mao*, D. N. Fang, X. Chen. In-situ measurements of mechanical and volume change of LiCoO2 lithium-ion batteries during repeated charge–discharge cycling by using digital image correlation. Measurement, 2016, 94:759-770.(發表日期: 2016.09,影響因子2.359,他引2次)
[25]W. G. Mao*, J. Chen, M. S. Si, R. F. Zhang, Q. S. Ma, D. N. Fang, X. Chen. High temperature digital image correlation evaluation of in-situ failure mechanism: An experimental framework with application to C/SiC composites. Materials Science and Engineering: A, 2016, 665:26-34.(發表日期: 2016.05,影響因子3.094,他引1次)
[26]W. G. Mao, C. Y. Dai, Y. C. Zhou, X. H. Yu, Thermo-mechanical buckling failure of thermal barrier coatings with arbitrary delamination location, Advances In Vibration Engineering, 2007, 6(2):149-164.(發表日期:2007.04,影響因子0.12,他引1次)
[27]W. G. Mao, C. Y. Dai, Y. C. Zhou, Q. X. Liu, An experimental investigation of the interface fracture characteristic in air plasma sprayed thermal barrier coating system at ambient and different high temperatures, Key Engineering Materials, 2007, 353:239-242.(發表日期: 2007.03)
[28] Q. Liu, W. Zhou, J. Ding, M. Xiao, Z. J. Yu, H. Xu,W. G. Mao*, Y. M. Pei, F. X. Li, X. Feng, D. N. Fang. Study of mechanical-magnetic and electromagnetic properties of PZT/Ni film systems by a novel bulge technique. Journal of Magnetism and Magnetic Materials, 2017, 423:90-97.(發表日期: 2016.01,影響因子2.630,他引2次)
[29] L. Yang, Y. C. Zhou,W. G. Mao, C. Lu, Real-time acoustic emission testing based on wavelet transform for the failure process of thermal barrier coatings, Applied Physics Letters, 93, 231906, 2008.(發表日期: 2008.12,影響因子3.411,他引5次)
[30] L. Yang, Y. C. Zhou,W. G. Mao, Q. X. Liu, Acoustic emission evaluation of the fracture behavior of APS-TBCs subjecting to bond coating oxidation, Surface and Interface Analysis, 2007, 39: 761-769.(發表日期:2007.09,影響因子1.132,他引4次)
[31] A. Nawaz,W. G. Mao, C. Lu, Y. G. Shen. Nano-scale elastic–plastic properties and indentation-induced deformation of amorphous silicon carbide thin film. Ceramics International, 2017, 43(1):385-391.(發表日期: 2017.01,影響因子2.986,他引2次)
[32] A. Nawaz,W. G. Mao, C. Lu, Y. G. Shen. Nano-scale elastic-plastic properties and indentation-induced deformation of single crystal 4H-SiC. Journal of the Mechanical Behavior of Biomedical Materials, 2017, 66:172-180.(發表日期: 2017.02,影響因子3.110,他引1次)
[33] L. W. Yang, H. T. Liu, R. Jiang, X. Sun,W. G. Mao, H. F. Cheng, J. M. Molina-Aldareguía. Weak interface dominated high temperature fracture strength of carbon fiber reinforced mullite matrix composites. Journal of the European Ceramic Society, 2017, 37(8):2991-2996.(發表日期: 2017.06,影響因子3.411,他引1次)
[34] S. Han, L. W. Yang, H. T. Liu, X. Sun, R. Jiang,W. G. Mao, Z. H. Chen. Micro-mechanical properties and interfacial engineering of SiC fiber reinforced sol-gel fabricated mullite matrix composites. Materials & Design, 2017, 131:265-272.(發表日期:2017.10,影響因子4.364)
[35] L. Yang, Y. C. Zhou,W. G. Mao, Q. X. Liu, Nondestructive impedance spectroscopy evaluation of the bond coat oxidation in thermal barrier coatings, Surface Review and Letters, 2007, 14(5): 935-943.(發表日期: 2007.10,影響因子0.491,他引2次)
[36] Z. Yu,W. G. Mao, F. Li, X. Feng, Y. Pei, D. Fang. Magnetic and electric bulge-test instrument for the determination of coupling mechanical properties of functional free-standing films and flexible electronics. Review of Scientific Instruments, 2014, 85(6):065117-6.(發表日期: 2014.06,影響因子1.515,他引1次)