Selected Publications
(*-Corresponding Author)
2019年论文
[54] J.S. Jiang, L.X. Jiang, X.F. Zhao, W.Z. Wang(*), Y.Z. Liu, Z.M. Cao, Numerical stress analyses of the TBC-film cooling system under the operating condition considering the effects of thermal gradient and TGO growth, Surface Coatings and Technology, 2019, 357, 433-444
2018年论文
[53] W.Z. Wang(*), Y.Z. Liu, Continuum damage mechanics-based analysis of creep-fatigue-interaction behavior in a turbine rotor, International Journal of Damage Mechanics, Online, 2018.04. DOI: 10.1177/1056789518775174
[52] J.S. Jiang, X.F. Zhao, W.Z. Wang(*), Y.Z. Liu, Z.M. Cao, Numerical analyses of the residual stress and top coat cracking behavior in thermal barrier coatings under cyclic thermal loading, Engineering Fracture Mechanics, 2018, 196(1): 191-205
[51] J.S. Jiang, Z.H. Zou, W.Z. Wang(*), X.F. Zhao, Y.Z. Liu, Z.M. Cao, Effect of internal oxidation on the interfacial morphology and residual stress in air plasma sprayed thermal barrier coatings, Surface Coating and Technology, 2018, 334(25):215-226
[50] B.Q. Xu, J.S. Jiang, Z.H. Zhou, W.Z. Wang, X.F. Zhao(*), Y.Z. Liu, P. Xiao, Time-dependent spalling behavior of thermally grown oxide induced by room temperature interfacial deformation, Surface Coating and Technology, 2018, 334(25): 164-172
[49] J.S. Jiang, J.D. Yang, L. Xiao, S.H. Xu, W.Z. Wang(*), Y.Z. Liu, Numerical analysis of the impact effect of foreign bodies on a steam strainer in a steam turbine valve, Journal of Mechanical Science and Technology, 2018, 32 (1) :405-413
[48] N.L. Zhao, W.Z. Wang(*), Y.Z.Liu, Intergranular mechanical behavior in a blade groove-like component by crystal plasticity model with cohesive zone model, Engineering Fracture Mechanics, 2018, 201(1):196-213
[47] R.A. Adjei, W.Z. Wang(*), D. Peng, T. Bamba, Y.Z. Liu, Tip Clearance Effects on Turbocharger Compressor Performance, Proceedings of ASME Turbo Expo, June 11-15, Norway, 2018
2017年发表及录用
[46] W.Z. Wang(*), S.H. Xu, Y.Z. Liu, Numerical investigation on creep-fatigue behavior in a steam turbine inlet valve under cyclic thermo-mechanical loading, ASME Journal of Engineering for Gas Turbines and Power, 2017, 139(11), 112502-112502-15.
[45] N.L. Zhao, W.Z. Wang(*), J.S. Jiang, Y.Z. Liu, Study of Creep-Fatigue Behavior in a 1000 MW Rotor Using a Phenomenological Lifetime Model, Journal of Mechanical Science and Technology, 2017, 31(2): 605-614.
[44] J.S. Jiang, B.Q. Xu, W.Z. Wang(*), Richard Adjei, X.F. Zhao, Y.Z. Liu, Finite Element Analysis of the Effects of Thermally Grown Oxide Thickness and Interface Asperity on the Cracking Behavior Between the Thermally Grown Oxide and the Bond Coat, ASME Journal of Engineering for Gas Turbines and Power (ASME TURBO EXPO 2016, 大会推荐期刊发表), 2017, 139: 022504-1-9.
[43] Z.W. Cai, W.Z. Wang(*), H. Hong, Numerical study of steam film cooling on a thick-wall cylinder with R5 Code based strength analysis, ASME PVP July 16-20, USA, 2017
[42] J.S. Jiang, Z.W. Cai, W.Z. Wang(*), Y.Z. Liu, Finite element analysis of thermal-mechanical behavior in the thermal barrier coatings with cooling holes structure, Proceedings of ASME Turbo Expo, June 26-30, USA, 2017
[41] R. A. Adjei, W.Z. Wang(*), J.S. Jiang, Y.Z. Liu, T. Kawakubo, Numerical investigation of the evolution of upstream propagating shockwaves in a transonic centrifugal compressor, Proceedings of ASME Turbo Expo, June 26-30, USA, 2017
2016年发表
[40] W.Z. Wang(*), P. Buhl, A. Klenk, Y.Z. Liu, A continuum damage mechanics-based viscoplastic model of adapted complexity for high temperature creep-fatigue loading, ASME Journal of Engineering for Gas Turbines and Power, 2016, 138(9), 092501-10.
[39] W.Z. Wang(*), P. Buhl, A. Klenk, Y.Z. Liu, The effect of in-service steam temperature transients on the damage behavior of a steam turbine rotor, International Journal of Fatigue, 2016,87, 471–483.
[38] W.Z. Wang(*), P. Buhl, A. Klenk, Y.Z. Liu, Influence of high-temperature dwell time on creep-fatigue behavior in a 1000 MW steam turbine rotor, Engineering Fracture Mechanics, 2016, 166, 1-22.
[37] W.Z. Wang(*), P. Buhl, A. Klenk, Y.Z. Liu, Study of creep-fatigue behaviour in a 1000 MW rotor using a unified viscoplastic constitutive model with damage, International Journal of Damage Mechanics;25(2): 178-202, 2016
[36] N.L. Zhao, W.Z. Wang(*), J.H. Zhang, Y.Z. Liu, Numerical investigation on life improvement of low-cycle fatigue for an ultra-supercritical steam turbine rotor, Journal of Mechanical Science and Technology, 2016, 30(4), 1747-1754
[35] N.L. Zhao, W.Z. Wang(*), H. Hong, Richard Adjei, Y.Z. Liu, Mechanical behavior study of steam turbine casing bolts under in-service conditions, ASME TURBO EXPO 2016
[34] H. Hong, W.Z. Wang(*), N.L. Zhao, Z.W. Cai, Y.Z. Liu, Influence of temperature and pressure fluctuation on the mechanical behavior of a seal structure in steam turbine valve under in-service condition, ASME TURBO EXPO 2016
[33] Z.W. Cai, W.Z. Wang (*), Y.Z. Liu, R5 procedure based damage estimation in a steam turbine valve under in-service conditions, ASME Pressure Vessels and Piping, Canada, Vancouver, 2016
[32] H. Hong, W.Z. Wang (*), Y.Z. Liu, Fatigue life investigation of a high pressure inner casing under in-service conditions, ASME Pressure Vessels and Piping, Canada, Vancouver, 2016
[31] Z.W. Cai, W.Z. Wang(*), Y.Z. Liu, Numerical study of steam film cooling behavior in a thick-wall cylinder, 9th China-Japan Bilateral Symposium on High Temperature Strength of Materials, Changsha, China, 2016.
[30] Richard A. Adjei, Weizhe Wang(*), Nailong Zhao, Yingzheng Liu,FATIGUE AND LIFETIME ESTIMATION OF A HIGHLY STRESSED CENTRIFUGAL COMPRESSOR IMPELLER(分组特邀报告),第十八届全国疲劳与断裂学术会议, 2016
2015发表及录用
[29] W.Z. Wang(*), Y.Z. Liu, Analysis of the sealing performance and creep behavior of the inner casing of a 1000 MW supercritical steam turbine under bolt relaxation, Engineering Failure Analysis, 57: 363-376, 2015
[28] W.Z. Wang(*), Y.Z. Liu, P.N. Jiang, Numerical investigation on influence of real gas properties on nonlinear behavior of labyrinth seal-rotor system, Applied Mathematics and Computation, 263: 12-24, 2015
[27] W.Z. Wang(*), P. Buhl, A. Klenk , A unified viscoplastic constitutive model with damage for multi-axial creep-fatigue loading, International Journal of Damage Mechanics, 24(3): 363-382, 2015
[26] J.S. Jiang, W.Z. Wang (*), Y.Z. Liu, Application of a creep damage constitutive model for the rotor of a 1000 MW ultra-supercritical steam turbine, ASME Journal of Engineering for Gas Turbines and Power, 2015; 138(2):022606-022606-6
[25] J.F. Mao, W.Z. Wang(*), J.H. Zhang, Y.Z. Liu, Numerical investigation on the dynamic behaviors of turbine valve disc–seat impact at low velocity, Journal of Mechanical Science and Technology, 29(2):1-9, 2015
[24] G.C. Jiao, W.Z. Wang(*), S.J. Tan, C. Yu, Y.Z. Liu, Crack-tip constraint analysis of SENB specimen under creep condition, Journal of Mechanical Science and Technology, 29 (2):1-6, 2015
[23] Z.W. Cai, W.Z. Wang (*), Study of Creep Damage of a Thin-wall Outer Casing of a 1000MW Ultra-supercritical Steam Turbine, The 13th Asian International Conference on Fluid Machinery, 7th-10th Sept., WASEDA University, Tokyo, Japan, 2015
[22] H. Hong, W.Z. Wang (*), Numerical Investigation of Creep Behavior of an Inner Casing of a 1000MW Ultra-supercritical Steam Turbine, The 13th Asian International Conference on Fluid Machinery, 7th-10th Sept., WASEDA University, Tokyo, Japan, 2015
[21] J.S. Jiang, W.Z. Wang (*), Y.Z. Liu, Application of a creep damage constitutive model for the rotor of a 1000 MW ultra-supercritical steam turbine, ASME Journal of Engineering for Gas Turbines and Power, ASME TURBO EXPO 2015, Montreal, Canada, 2015
2014年发表
[20] W.Z. Wang(*), Analysis of multi-axial creep-fatigue damage on an outer cylinder of a 1000MW supercritical steam turbine, ASME Journal of Engineering for Gas Turbines and Power, 136(11): 112504-112504-8, 2014
[19] W.Z. Wang(*), Numerical analysis of fatigue life improvement by optimizing the startup phase for a 1000?MW supercritical steam turbine inner casing, ASME Journal of Engineering for Gas Turbines and Power, 137(4):042601-042601-10, 2014
[18] W.Z. Wang(*), J.H. Zhang, Influence of creep on low-cycle fatigue life assessment of ultra-supercritical steam turbine rotor, ASME TURBO EXPO 2014, June 16-20, Dusseldorf, Germany, 2014
[17] W.Z. Wang(*), Chao Yu, Junhui Zhang, Yingzheng Liu, Numerical investigation on creep and fatigue behaviours of a 1000 MW steam turbine inner cylinder [C . International Conference on Fatigue Damage of Structural Material X, The Resort and Conference Center at Hyannis, MA, USA, 21-26 September 2014
[16] J.F. Mao, W.Z. Wang(*), Y.Z. Liu, J.H. Zhang, Comparative study of flange-to-seal contact couplings with bolt relaxation under creep condition, ASME Journal of Engineering for Gas Turbines and Power, 136(7):072504-072504-8, 2014
[15] J.F. Mao, W.Z. Wang, Environmental fatigue analysis of a U seal in pressure vessel under simulated LWR operation, Engineering Failure Analysis, 36: 362-371, 2014
2013年以前发表论文
[14] J.F. Mao, W.Z. Wang(*), Y.Z. Liu, Experimental and theoretical investigation on the sealing performance of the combined seals for reciprocating rod, Journal of Mechanical Science and Technology, 26(6): 1765-1772, 2012
[13] P.N. Jiang, W.Z. Wang(*), Y.Z. Liu, G. Meng, Influence of steam leakage through vane, gland, and shaft seals on rotordynamics of high-pressure rotor of a 1000 MW ultra-supercritical steam turbine, Archive of Applied Mechanics, 82(2): 177-189, 2012
[12] G.C. Jiao, W.Z. Wang(*), Crack-tip constraint analysis of two collinear cracks under creep condition, Structural Engineering and Mechanics, 43(3): 311-320, 2012
[11] J.F. Mao, W.Z. Wang(*), Y.Z. Liu, J.H. Zhang, Multiaxial creep-fatigue life prediction on the rotor of a 1000MW supercritical steam turbine, GT-2012 ASME Turbo Expo, Copenhagen, Denmark, June 11-15, 2012
[10] G.C. Jiao, G. Chen, W.Z. Wang(*), A model for the stress corrosion cracking growth rate of the metallic materials, GT-2012 ASME Turbo Expo, Copenhagen, Denmark, June 11-15, 2012
[9] P.N. Jiang, W.Z. Wang(*), G.C. Jiao, Analysis of high temperature creep on the nut connection components of a 600MWsupercritical steam turbine, , GT-2012 ASME Turbo Expo, Copenhagen, Denmark, June 11-15, 2012
[8] W.Z. Wang , Ying Zheng Liu, Guang Meng, Pu Ning Jiang, Influence of rub groove on rotordynamics associated with leakage air flow through a labyrinth seal, Journal of Mechanical Science and Technology, 2010,24(8):1573-1581, 2010.04
[7] W.Z. Wang, LIU Ying-zheng, Meng Guang, Jiang Pu-ning, A nonlinear model of flow-structure interaction between steam leakage through labyrinth seal and the whirling rotor, Journal of Mechanical Science and Technology, 2009(23): 3302-3315.
[6] W.Z. Wang, LIU Ying-zheng, JIANG Pu-ning, CHEN Han-ping, Nonlinear analysis of orbital motion of the rotor subject to leakage air flow through an interlocking seal, Journal of Fluids and Structures, 2009,2 (DOI: 10.1016/j.jfluidstructs.2008.07.009)
[5] W.Z. Wang, LIU Ying-zheng, CHEN Han-ping, et al., Computation of Rotordynamic Coefficients Associated with Leakage Steam Flow through Labyrinth Seal, Archive of Applied Mechanics, 2007.
[4] LIU Ying-zheng, W.Z. Wang, Chen Han-ping, .Jing Jian-ping, GE Qing, YUAN Ying, Influence of the leakage flow through labyrinth seal on rotor dynamics: numerical calculations and experimental measurements, Archive of Applied Mechanics, 2007 (SCI: DOI 10.1007/s00419-007-0119-z).
[3] W.Z. Wang, LIU Ying-zheng, JIANG Pu-ning CHEN Han-ping, Numerical analysis of leakage flow through two labyrinth seals, Journal of Hydrodynamics Ser.B, 2007, 19(1): 107-112.
[2] W.Z. Wang, LIU Ying-zheng, Meng Guang, A Nonlinear Model of Rotor-Bearing-Seal System Associated With Leakage Through the Labyrinth Seal, GT2010-Proceedings of ASME Turbo Expo 2010: Power for Land, Sea and Air, June 14-18, 2010, Glasgow, UK
[1] W.Z. Wang, LIU Yingzheng, CHEN Hanping, et al. Numerical and Experimental Investigation of Labyrinth-Seal Flow and Rotor Dynamics, AICFM-9, Jeju, Korea, 2007, 10.