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合肥工业大学土木与水利工程学院导师教师师资介绍简介-周荣欣

本站小编 Free考研考试/2021-04-24



性别:男学位:博士职务:所属学院:土木与水利工程学院社会兼职:E-mail:rongxinzhou@hfut.edu.cn
个人简介
周荣欣,男,1987年出生,结构力学博士,研究员,合肥工业大学“黄山****优秀青年”。从事工程力学专业的教学与科研工作。周荣欣教授于2016年获得英国爱丁堡大学结构力学专业博士学位后,先后在英国杜伦大学、拉夫堡大学从事博士后研究工作,有长达十余年从事工程材料断裂失效计算模拟经验,以及三年多利用先进计算力学方法,自主开发计算程序经验,以第一作者先后在《Computers & Structures》,《International Journal of Impact Engineering》,《Engineering Fracture Mechanics》,《Computational Material Sciences》,《Composites Part B》等工程力学领域权威SCI期刊数十篇。周荣欣教授多年来一直从事一线教学研究工作,熟悉领域内各种新技术新方法,在工程材料断裂失效分析,开发先进计算力学程序等研究方面积累了多年的研究经验,也是难得的对机械工程、先进材料、力学都有相关研究经验的研究人员。作为主要参与人在中英两国都有申请和执行多项国家级研究项目的经验,包括国家自然科学基金重点研发项目和英国自然科学基金重点项目。

教育经历2012.10-2016.11:英国爱丁堡大学,结构力学专业,博士
2009.09-2012.03:上海交通大学,固体力学专业,硕士
2005.09-2009.07:四川大学,工程力学专业,学士

工作经历2021.01-至今:合肥工业大学土木与水利工程学院工程力学系,黄山****优秀青年
2018.01-2020.07:英国拉夫堡大学机械与制造工程学院,博士后
2017.01-2017.12:英国杜伦大学工程学院,博士后

招生计划固体力学:先进航空金属合金疲劳小裂纹扩展,微观结构与力学性能研究,1-2名
计算力学:物质点法与裂纹扩展,相场法与裂纹扩展,1-2名
土木工程与工程力学:混凝土细观力学,岩石断裂等,1-2名
欢迎具有力学、土木、机械,材料等工科背景的同学报考研究生,优秀者可推荐至海外知名学府攻读或者联合培养博士。

研究方向混凝土细观断裂力学与氯离子扩散
金属合金晶体塑性有限元与动态再结晶
先进计算力学方法与裂纹扩展

主持科研项目[1]主持合肥工业大学“黄山****优秀青年”人才引进启动基金,2021-2026

参加科研项目[1]英国自然科学基金重点研发项目,航空材料超声激光混合加工变形机理研究,项目编号:EP/P027555/1,经费约400万,2017/10/01-2021/09/30;
[2] 英国自然科学青年基金项目, 物质点法在高铁枕轨裂纹扩展中的应用,项目编号:EP/M017494/1,经费约250万,2015/05/01-2017/12/31;
[3] 英国苏格兰市政项目,近海风力涡轮机循环荷载作用下桩土相互作用有限元分析,项目编号:RA3065,经费约5万,2015/03/01-2015/06/30;
[4]国家自然科学基金重点项目,材料构型力理论与实验研究,项目编号:NSFC** ,经费190万,2010/01-2013/12;
[5] 国家自然科学基金面上项目,裂纹尖端塑性区对金属材料疲劳行为的影响,项目编号:NSFC**,经费62万,2011/01-2015/12;
[6] 国家自然科学基金面上项目,金属材料损伤自愈力学机理研究,项目编号:NSFC**,经费40万,2009//01-2012/12

获得奖励情况


发表科研论文[1] Zhou, R., et al. (2011) Crack deflection and interface debonding in composite materials elucidated by the configuration force theory.Composites. Part B, Engineering,Volume 42, Issue 7 pp. 1999-2003.(SCI;第一作者;最新影响因子:6.9)
[2] Zhou, R., et al. (2012) The shielding effect of the plastic zone at mode-II crack tip.International Journal of Fracture,Volume 171, Issue 2 pp. 195-2000. (SCI;第一作者;最新年影响因子:2.9)
[3] Zhou, R., et al. (2017) 3D mesoscale finite element modelling of concrete,Computers & StructuresVolume 192, Issue 2 96-113(SCI;第一作者;最新影响因子:3.3)
[4] Zhou, R., et al. (2018) A mesoscale interface approach to modelling fractures in concrete for material investigation,Construction and Building MaterialsVolume 165, 608-620(SCI;第一作者;最新影响因子:4.04)
[5]Zhou, R. & Chen H-M. (2019)Mesoscopic investigation of size effect in notched concrete beams: The role of fracture process zone.Engineering Fracture Mechanics.212, 136-152 (SCI;第一作者;最新影响因子:2.9)
[6]Zhou, R., Roy A., Silberschmidt, V. (2019) A crystal-plasticity model of extruded AM30 magnesium alloy.Computational Materials Science.170, 109140(SCI;第一作者;最新影响因子:2.7)
[7]Zhou, R,Pang, K, Bisht, A,Roy, A, Suwas, S, Silberschmidt, V. (2019)Modelling strain localization in Ti-6Al-4V at high loading rate: A phenomenological approach,Philosophical Transactions A: Mathematical, Physical and Engineering Sciences(SCI;第一作者;最新影响因子:3.1)
[8] Li, X., Chen, H., Yang, W. andZhou, R. (2016) Study on the mechanical model of splitting failure of surrounding rock of underground cavern based on energy and thin plate theory.Geomechanics and Engineering(SCI;最新影响因子:2.6)
[9]Zhou, R., et al. (2020) Mesoscale modelling of concrete under high strain rate tension with a rate-dependent cohesive interface approach,International Journal of Impact EngineeringVolume 139, 1-15 (SCI;第一作者;最新影响因子:3.2)
[10] Pang, K.H.,Zhou, R.and Roy A. (2020) Deformation characteristics in micromachining of single crystal 6H-SiC: Insight into slip systems activation.Journal of Mechanics 1-9. doi:10.1017/jmech.2019.63(SCI;最新影响因子:1.30)
[11] Bisht, A., Kumar, S., Pang, K.,Zhou, R., Roy, A., Silberschmidt, V., & Suwas, S. (n.d.). Shear band widening mechanism in Ti–6Al–4V under high strain rate deformation.Journal of Materials Research,1-12. doi:10.1557/jmr.2020.45(SCI;最新影响因子:1.98)
[12] Chen, H.,Zhou, R.and Ulianov, C. (2020)Numerical prediction and corresponding circular economy approaches for resource optimisation and recovery of underground structures,Urban Rail Transit(SCI;最新影响因子:1.38)
[13] Zhou, R.,Lu, Y.; Wang, L-G.; Chen, H-M, Mesoscale modelling of size effect on the evolution of fracture process zone in concrete.Engineering Fracture Mechanics, 2021.03.15, 245: 107559 (SCI;第一作者;最新影响因子:2.9)
会议论文[1] Zhou, R., & Lu, Y. (2014) Numerical simulation of size effect in concrete beams.Infrastructure and Environment Scotland 2ndPostgraduate Conference, 2ndSeptember Edinburgh, UK
[2] Zhou, R. & Lu, Y. (2015) 3D Mesoscale analysis of strain rate effects in concrete under compression.The First International Conference on Structural Safety under Fire & Blast, 2-4 September, Glasgow, UK
[3] Lu, Y. &Zhou, R. (2015) A 3-D perspective of dynamic behaviour of heterogeneous solids.11th International DYMAT Conference, 7-11 September, Lugano, Switzerland.
[4] Zhou, R.& Lu, Y. (2017) The mechanics of concrete material under high strain rate loading: some recent development.12th International Conference on Shock & Impact Loads on Structures, 12-15 June 2017 Singapore
[5] Zhou, R. & Lu, Y. (2017) Holistic mesoscale modelling of concrete–recent developments XIII International conference on computational plasiticity: Fundamental and Applications 5-7 September 2017 Barcarola, Spain
[6] Zhou, R., Roy A., Silberschmidt, V. (2018) Temperature and strain-rate effects in extruded AM30: account for deformation slip and twinning in simulations.28thInternational Workshop on Computational Mechanics of Materials (IWCMM),10 -12 September 2018 Glasgow, UK
[7] Zhou, R.Roy, A. Silberschmidt, VV. (2019) Modelling the temperature and strain-rate effects of extruded magnesium alloy accounting for deformation slip and twinning.Advances in Engineering Materials, Structures and Systems: Innovations, Mechanics and Applications: Proceedings of the 7th International Conference on Structural Engineering, Mechanics and Computation (SEMC 2019), September 2-4, 2019, Cape Town, South Africa









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