更新日期:2018年9月2日
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姓 名
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王炯
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性 别
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男
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出生年月
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1981年7月
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籍贯
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陕西清涧县
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民 族
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汉族
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政治面貌
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中国共产党党员
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最后学历
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博士研究生
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最后学位
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哲学博士
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技术职称
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副教授
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导师类别
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博、硕导
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行政职务
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副主任
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Email
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ctjwang@scut.edu.cn
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工作单位
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华南理工大学
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邮政编码
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510640
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通讯地址
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华南理工大学交通大楼
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单位电话
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020-87111030-3693
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个人简介
王炯,副教授,博士生导师。2009年获香港城市大学博士学位。2009-2014年在香港和德国的科研机构从事研究工作,获得德国洪堡博士后奖学金资助。2014年9月入职华南理工大学土木与交通学院,现任工程力学系副系主任。长期从事超弹性材料和金属智能材料力学性能的研究工作,重点关注材料在有限(大)变形条件下的不稳定性和马氏体相变等复杂力学行为。目前主持国家自然科学项目2项、广东省自然科学杰出青年基金项目1项、广东特支计划科技创新青年拔尖人才项目1项。近年来在J. Mech. Phys. Solids,Acta Mater.,Int. J. Plast.,Int. J. Soilds Struct.等知名学术期刊发表SCI 论文26 篇(JCR 大类学科一区期刊论文6 篇,二区期刊论文5 篇),并发表了多篇国际会议论文,申请发明专利2 项。目前兼任广东省力学学会理事一职。
工作经历
(1) 2014.7-至今, 华南理工大学, 土木与交通学院, 副教授
(2) 2010.11-2014.6, 德国爱尔兰根-纽伦堡大学, 应用力学系, 洪堡博士后研究员, 副研究员
(3) 2009.9-2010.9, 香港城市大学, 数学系, 博士后研究员
教育经历
(1) 2006.9–2009.8, 香港城市大学, 数学, 博士
(2) 2003.9–2006.6, 复旦大学, 数学, 硕士
(3) 1999.9–2003.7, 复旦大学, 信息与计算科学, 学士
获奖、荣誉称号
(1) 广东省自然科学杰出青年基金获得者
(2) 广东特支计划科技创新青年拔尖人才
(3) 德国洪堡博士后奖学金
社会、学会及学术兼职
第九届广东省力学学会理事
研究领域
长期从事超弹性材料和金属智能材料力学性能研究,重点关注材料在有限(大)变形条件下的不稳定性和马氏体相变等复杂力学行为
科研项目
1. 国家自然科学基金面上项目,11872184,基于新型有限应变板壳理论的软材料生长变形研究,2019/01-2022/12,61万元,在研,主持
2. 广东特支计划科技创新青年拔尖人才,2017年,先进制造领域
3. 国家自然科学基金青年科学基金项目,11602086,基于变分原理的单晶NiMnGa合金磁力学行为研究,2017/01-2019/12,22万元,在研,主持
4. 国家自然科学基金面上项目,11672110,动态复杂加载下无机玻璃材料的损伤破坏行为及其本构描述,2017/01-2020/12,66万元,在研,参加
5. 广东省自然科学基金杰出青年基金项目,2015A030306009,超临界环境中新型抗蠕变合金材料多机制损伤的理论分析与实验研究,2015/08-2019/08,100万元,在研,主持
6. 华南理工大学中央高校基本科研业务费面上项目,2015ZM082,超临界环境中新型抗蠕变合金材料的蠕变和疲劳损伤研究,2015/01-2016/12,9万元,已结题,主持
7. 企业合作项目,高温抗蠕变合金材料热力学行为模拟及多轴疲劳寿命预测,2012/11-2014/06,13万欧元(德国核电公司AREVA GmbH资助),已结题,参加(第一完成人)
8. 德国洪堡基金会博士后研究项目,磁性形状记忆合金磁力学行为的数学建模与数值模拟,2010/11-2012/10,6万欧元(德国洪堡基金会资助),已结题,主持
发表论文
[1] Jiong Wang, David J. Steigmann, Fanfan Wang, Hui-Hui Dai, On a consistent finite-strain plate theory of growth, Journal of the Mechanics and Physics of Solids, 2018, 111: 184-214. (SCI)
[2] Hongwei Liu, Jiong Wang, Hui-Hui Dai, Analytical study on stress-induced phase transitions in geometrically graded shape memory alloy layers. Part I: asymptotic equation and analytical solutions, Mechanics of Materials, 2017, 112: 40-55. (SCI)
[3] Hongwei Liu, Jiong Wang, Hui-Hui Dai, Analytical study on stress-induced phase transitions in geometrically graded shape memory alloy layers. Part II: analyses on geometrical shapes, loading procedures and boundary, Mechanics of Materials, 2017, 112: 114-128. (SCI)
[4] Xiaodan Cai, Jiong Wang, A three-stage constitutive model for the creep behaviors of high-Cr steels at elevated temperatures, Materials at High Temperatures, 2017, 34, 1-11. (SCI)
[5] Pingping Zhu, Ping Feng, Qingping Sun, Jiong Wang, Hui-Hui Dai, Determining the up-down-up response through tension tests of a pre-twisted shape memory alloy tube, International Journal of Plasticity, 2016, 85: 52-76. (SCI)
[6] Jiong Wang,Accurate evaluation of the configurational forces in
single-crystalline NiMnGa alloys under mechanical loading conditions,Acta Materialia,2016,105:306-316. (SCI)
[7] Jiong Wang,Zilong Song,Hui-Hui Dai,On a consistent finite-strain plate theory for incompressible hyperelastic materials,International Journal of Solids and Structures,2016,78-79:101-109. (SCI)
[8] Jiong Wang, Paul Steinmann, On the modeling of equilibrium twin interfaces in a single-crystalline magnetic shape memory alloy sample. II: numerical algorithm, Continuum Mechanics and Thermodynamics, 2016, 28, 669-698. (SCI)
[9] Jiong Wang, Paul Steinmann, On the modeling of equilibrium twin interfaces in a single-crystalline magnetic shape memory alloy sample. III: magneto-mechanical behaviors, Continuum Mechanics and Thermodynamics, 2016, 28, 885-913. (SCI)
[10] Jiong Wang,Paul Steinmann,Juergen Rudolph,Adrian Willuweit, Simulation of creep and cyclic viscoplastic strains in high-Cr steel components based on a modified Becker-Hackenberg model,International Journal of Pressure Vessels and Piping,2015,128:36-47. (SCI)
[11] Xiang Ou,Qiang Han,Hui-Hui Dai,Jiong Wang,Molecular dynamic simulations of the water absorbency of hydrogels,Journal of Molecular Modeling,2015,21:231. (SCI)
[12] Hui-Hui Dai,Fanfan Wang,Jiong Wang,Jian Xu,Pitchfork and octopus bifurcations in a hyperelastic tube subjected to compression: Analytical post-bifurcation solutions and imperfection sensitivity,Mathematics and Mechanics of Solids,2015,20(1):25-52. (SCI)
[13] Jiong Wang,Paul Steinmann,On the modeling of equilibrium twin interfaces in a single-crystalline magnetic shape memory alloy sample. I: theoretical formulation,Continuum Mechanics and Thermodynamics,2014,26: 563-592. (SCI)
[14] Jiong Wang,Paul Steinmann,Finite element simulation of the magneto-mechanical response of a magnetic shape memory alloy sample,Philosophical Magazine,2013,93(20):2630-2653. (SCI)
[15] Jiong Wang,Paul Steinmann,Hui-Hui Dai,Analytical study on the stress-induced phase or variant transformation in slender shape memory alloy samples,Meccanica,2013,48:943-970. (SCI)
[16] Jiong Wang,Paul Steinmann,A variational approach towards the modeling of magnetic field-induced strains in magnetic shape memory alloys,Journal of the Mechanics and Physics of Solids,2012,60:1179-1200. (SCI)
[17] Jiong Wang,Hui-Hui Dai,An internal-variable rod model for stress-induced phase transitions in a slender SMA layer. I: Asymptotic equations and a two-phase solution,Mechanics of Materials,2012,45: 117-134. (SCI)
[18] Jiong Wang,Hui-Hui Dai,An internal-variable rod model for stress-induced phase transitions in a slender SMA layer. II. Analytical solutions for the outer loop and inner loops,Mechanics of Materials,2012,45:83-102. (SCI)
[19] Hui-Hui Dai, Jiong Wang, Instabilities induced by phase transformation fronts coalescence during the phase transitions in a thin SMA layer: Mechanism and analytical descriptions,International Journal of Engineering Science,2010,48:1146-1163. (SCI)
[20] Jiong Wang, Hui-Hui Dai, Phase transitions induced by extension in a slender SMA cylinder: analytical solutions for the hysteresis loop based on a quasi-3D continuum model, International Journal of Plasticity, 2010, 26: 467-487. (SCI)
[21] Hui-Hui Dai, Jiong Wang, An analytical study on the geometrical size effect on phase transitions in a slender compressible hyperelastic cylinder, International Journal of Non-linear Mechanics, 2009, 44: 219-229. (SCI)
[22] Hui-Hui Dai, Jiong Wang, Chen Zhen, An analytical study of the instability of a superelastic shape memory alloy cylinder subject to practical boundary conditions, Smart Materials and Structures, 2009, 18: 024007. (SCI)
[23] Jiong Wang, Algebro-geometric solutions for some (2+1)-dimensional discrete systems, Nonlinear Analysis-Real World Applications, 2008, 9: 1837-1850. (SCI)
[24] Jiong Wang, Darboux transformation and soliton solutions for the Boiti-Pempinelli-Tu (BPT) hierarchy, Journal of Physics A-Mathematical and General, 2005, 38: 8367-8377. (SCI)
[25] Jiong Wang, Darboux transformation and soliton solutions for the Heisenberg hierarchy, Journal of Physics A-Mathematical and General, 2005, 38, 5217-5226. (SCI)
[26] Zilong Song, Jiong Wang, Hui-Hui Dai, On a consistent dynamic finite-strain shell theory and its linearization, Mathematics and Mechanics of Solids, 2018, https://doi.org/10.1177/1081286517754245. (SCI)