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在《Int. J. Plasticity》、《Int. J. Fatigue》、《固体力学学报》、《金属学报》、《工程力学》等期刊上发表论文40余篇。论文被SCI收录13篇、EI收录27篇、ISTP收录7篇。 代表性论文:

[1]Liu Yujie, Gao Qing, Kang Guozheng. A damage-coupled multi-axial time-dependent low cycle fatigue failure model for SS304 stainless steel at high temperature, Acta Metall. Sin.(Engl. Lett.),2011,24,169-174(SCI):


[2]Yujie Liu, Guozheng Kang, Qing Gao. A multiaxial stress-based fatigue failure model considering ratchetting–fatigue interaction, International Journal of Fatigue, 2010, 32(4):678-684. (SCI556OEEI: 20095112563801)

[3]Liu Yujie, Kang Guozheng, Gao Qing. Stress-based fatigue failure models for uniaxial ratchetting-fatigue interaction, International Journal of Fatigue, 2008, 30(6)1065-1073.(SCI: 289QK, EI: 081211157464)

[4]刘宇杰,康国政,高庆,李钊.循环软化材料单轴时相关循环变形行为的实验研究,工程力学, 2008, 25(3): 68-72.EI: 081611206720

[5]刘宇杰,康国政,高 庆,李 钊.退火42CrMo钢的棘轮-疲劳交互作用及其疲劳失效模型,工程力学, 2008, 25(11):186-191EI20085011776805

[6]Yujie Liu, Guozheng Kang, Yawei Dong. Experimental study on ratcheting-fatigue interaction of 20 carbon steel in uniaxial cyclic loading, International Conference on Experimental Mechanics 2008, ICEM 2008, Nanjing, China(EI: 20100812728575)

[7] Kang Guozheng,Liu Yujie, Ding Jun. Multiaxial ratchetting-fatigue interaction of 42CrMo steels: experimental observations, International Journal of Fatigue, 2008, 30, 2104-2118. (SCI 363N; EI, 2008)

[8]刘宇杰,蔡力勋,杨显杰等.描述1Cr18Ni9Ti不锈钢单轴棘轮行为的黏塑性本构模型,航空学报,2005,26(1):58-61.(EI05219118423)

[9]Liu Yujie, Kang Guozheng, Gao Qing, Multiaxial rachteting-fatigue interaction of SS304 stainless steel. 9th International Conference on Engineering Structural Integrity AssessmentBeijingChina15th to 19th October 2007.

[10] Kang Guozheng,Liu Yujie. Uniaxial ratchetting and low-cycle fatigue failure of the steels with cyclic stabilizing or softening feature, Materials Science & Engineering A, 2008, 472(1-2), p258-268.SCI: 255HPEI: 20075010973360

[11] Kang Guozheng,Liu Yujie, Ding Jun. Uniaxial ratcheting and fatigue failure of tempered 42CrMo steel: Experiments and damage-coupled visco-plastic constitutive model, International Journal of Plasticity, 2009,25,838-860SCI433ZUEI20091211964544



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