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[1]Chuanli Yu, Zhiyong Huang, Zian Zhang, Jian Wang, Jiebin Shen, Zhiping Xu,Effects of sandblasting and HIP on very high cycle fatigue performance of SLM-fabricated IN718 superalloy,Journal of Materials Research and Technology, 18,2022, 29-43
[2]Chuanli Yu, Zhiyong Huang, Zian Zhang, Jiebin Shen, Jian Wang, Zhiping Xu,Influence of post-processing on very high cycle fatigue resistance of Inconel 718 obtained with laser powder bed fusion,International Journal of Fatigue, 153,2021,106510
[3]Jian Wang, Zhiyong Huang, Yundong Sha, Jiebin Shen, Chuanli Yu,Thin-walled structure acoustic excitation response and fatigue life investigation in high temperature,Engineering Failure Analysis,Volume 127,2021,105438,
[4]Zhenjie Teng, Haoran Wu, Zhiyong Huang, Peter Starke,Effect of mean stress in very high cycle fretting fatigue of a bearing steel,International Journal of Fatigue, 149,2021,106262
[5]Hanqing Liu, Haomin Wang, Zhiyong Huang, Qingyuan Wang, Qiang Chen,Comparative study of very high cycle tensile and torsional fatigue in TC17 titanium alloy,International Journal of Fatigue, 139,2020,105720
[6]Zhenjie Teng, Hanqing Liu, Qingyuan Wang, Zhiyong Huang, Peter Starke,Fretting behaviors of a steel up to very high cycle fatigue,Wear, 438–439,2019,203078
[7]Yu Zhai, Zhi Yong Huang, Shun-Peng Zhu, Qing Yuan Wang,Very high cycle fretting fatigue damage and crack path investigation of Nimonic 80A at elevated temperature,International Journal of Fatigue, 132,2020,105345
[8]Hanqing Liu, Haomin Wang, Zhen Zhang, Yongjie Liu, Zhiyong Huang, Qingyuan Wang, Qiang Chen,Tensile and fatigue behavior of electron beam welded TC17 titanium alloy joint,International Journal of Fatigue, 128,2019,105210
[9]Zhiyong Huang, Zhen Zhang, Zhenjie Teng, Muhammad Kashif Khan, Qingyuan Wang, Jingyu Wang,Effect of fretting damage on characteristics of high strength bearing steel up to very high cycle fatigue,Engineering Fracture Mechanics,Volume 217,2019,106526
[10]Haomin Wang, Ruijie Li, Min Zhou, Julie Cedelle, Zhiyong Huang, Qingyuan Wang, Grain boundary sliding mechanism in plastic deformation of nano-grained YAG transparent ceramics: Generalized self-consistent model and nanoindentation experimental validation, Journal of the European Ceramic Society, 37, 7, 2017, 2705-2715
[11]Zhiyong Huang, Haomin Wang, Qingyuan Wang, Muhammad Kashif Khan, Micromechanical Modeling of Elastic-Viscoplastic Behavior of Armco-Fe at High Strain Rate, Acta Mechanica Solida Sinica, 29, 6, 2016, 655-662
[12]Zhi Yong Huang, Han Qing Liu, Hao Min Wang, Danièle Wagner, Muhammad Kashif Khan, Qing Yuan Wang, Effect of stress ratio on VHCF behavior for a compressor blade titanium alloy, International Journal of Fatigue, 93, 2, 2016, 232-237
[13]H.M. Wang, S.J. Jiang, W. Guo, Z.W. Lu, J.Q. Qi, T.C. Lu, Julie. Cedelle, Q.Y. Wang, Z.Y. Huang, The thermal shock behaviors of yb:YAG transparent ceramics, Ceramics International, 42, 7, 2016, 8804-8808
[14]Zhi Yong Huang, Danièle Wagner, Qing Yuan Wang, Muhammad Kashif Khan, Jean–Louis Chaboche, A low cycle fatigue model for low carbon manganese steel including the effect of dynamic strain aging, In Materials Science and Engineering: A, 654, 2016, 77-84
[15]Huang, Z. ,Wagner, D. ,Bathias, C.,Some metallurgical aspects of Dynamic Strain Aging effect on the Low Cycle Fatigue behavior of C-Mn steels,International Journal of Fatigue,2015, 80:113-120
[16]Huang, Z. Y. ,Liu, H. Q.,Wang, C. ,Wang, Q. Y.,Fatigue life dispersion and thermal dissipation investigations for titanium alloy TC17 in very high cycle regime,Fatigue & Fracture of Engineering Materials & Structures,2015,38(11):1285-1293
[17] Zhi Yong Huang, Qing Yuan Wang, Danièle Wagner, Claude Bathias A very high cycle fatigue thermal dissipation investigation for titanium alloy TC4, Materials Science and Engineering:A,2014,600,1,790-797
[18]Zhi Yong Huang, Wagner, Daniele, Qing Yuan Wang, Bathias Claude, Effect of dynamic strain aging on isotropic hardening in low cycle fatigue for carbon manganese steel, Materials Science and Engineering: A, 2014,589,1,34-40
[19] Zhiyong HUANG, Danièle Wagner, Claude Bathias, Jean Louis Chaboche. Cumulative fatigue damage in low cycle fatigue and gigacycle fatigue for low Carbon Manganese steel. International Journal of Fatigue 33 (2011) 115–121
[20]Zhi Yong Huang; Chaboche, J.-L, Bathias,C, Qing Yuan Wang, Effect of carburizing treatment on the “fish eye” crack growth for a low alloyed chromium steel in very high cycle fatigue, Materials Science and Engineering:A, 2013, 559, 1, 790-797
[21]Zhi Yong Huang; Qing Yuan Wang; Daniele Wagner, Claude Bathias, A rapid scatter prediction method for very high cycle fatigue, FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES,2013,5,36,462-468
[22]Zhi Yong Huang, Danièle Wagner , Claude Bathias, Paul C. Paris. Subsurface Crack Initiation and Propagation Mechanism in the Gigacycle Fatigue. Acta Materialia 58 (2010) 6046–6054