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华东理工大学机械与动力工程学院导师教师师资介绍简介-赵鹏

本站小编 Free考研考试/2021-01-16

赵鹏
E-mail:pengzhao@ecust.edu.cn
职位:
职称:
副教授











个人简介:
2003年3月获山东大学材料加工工程专业硕士学位,2007年12于上海交通大学获材料加工工程博士学位。2008年进入华东理工大学机械工程博士后流动站从事科研工作并留校任职至今。

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研究方向高温构件的变形及损伤理论,结构的蠕变疲劳破坏及寿命预测技术,轻合金加工技术等。

承担科研项目1. 国家自然科学基金面上项目,**,先进汽轮机转子蠕变疲劳交互作用下的微观不均匀形变及寿命模型,2015/01-2018/12、在研、主持。
2. 国家自然科学基金青年基金,**,超超临界机组高温部件棘轮损伤机理及寿命预测方法,2011/01-2013/12、已结题、主持。
获奖成果
代表性著作

(1)Zhao P, Xuan FZ*, Wu DL. Cyclic softening behaviors of modified 9–12%Cr steel under different loading modes: Role of loading levels. International Journal of Mechanical Sciences, 2017, 131–132: 278–285
(2)Zhao P, Xuan FZ*. Ratchetting behavior of advanced 9–12% chromium ferrite steel under creep-fatigue loadings: Fracture modes and dislocation patterns. Materials Science and Engineering A, 2012, 539: 301–307
(3)Zhao P, Xuan FZ*. Microstructural stability and its effect on ratchetting effect of advanced 9-12%Cr ferrite steel at high temperature. Procedia Engineering, 2012, 27: 1588-1595.
(4)Zhao P, Xuan FZ*. Ratchetting behavior of advanced 9–12% chromium ferrite steel under creep-fatigue loadings. Mechanics of Materials, 2011, 43: 299-312
(5)Zhao P, Xuan FZ*. Study on Creep-Fatigue Damage Evaluation for Advanced 9-12% Chromium Steels under Stress Controlled Cycling. Acta Metallurgica Sinica (English Letters), 2011, 24: 148-154
(6)ZhangSL, Xuan FZ*, Guo SJ,Zhao P. The role of anelastic recovery in the creep-fatigue interaction of 9–12% Cr steel at high temperature.International Journal of Mechanical Sciences, 2017, 122: 95–103.
(7)Zhang JF,Xuan FZ*,Xiang YX,Zhao P. Effects of Cyclic and Monotonic Deformations on Nonlinear Ultrasonic Response of Austenitic Stainless Steel: A Comparative Study. Journal of Materials Engineering and Performance,2016, 25:2008-2016.
(8)Wu DL, Xuan FZ*,Guo SJ,Zhao P. Uniaxial mean stress relaxation of 9-12% Cr steel at high temperature: experiments and viscoplastic constitutive modeling. Internal journal of plasticity, 2016, 77: 156-73.
(9)Wu DL,Zhao P,Wang QQ, Xuan FZ*. Cyclic behavior of 9-12% Cr steel under different control modes in low cycle regime: A comparative study, Internal journal of fatigue, 2015, 70: 114-122.
(10)Zhang JF, Xuan FZ*,Xiang YX,Zhao P. Experimental insight into the cyclic softening/hardening behavior of austenitic stainless steel using ultrasonic higher harmonics. EPL, 2014, 108: 46004.





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