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王炳雷
个人信息Personal Information
副教授博士生导师性别:男
毕业院校:山东大学/Columbia University
学历:研究生(博士)毕业
学位:工学博士学位
在职信息:在职
所在单位:土建与水利学院
入职时间:2011-07-18
-->学科:固体力学
办公地点:山东大学千佛山校区图东楼102D
电子邮箱:bwang@sdu.edu.cn扫描关注
个人简介Personal Profile
王炳雷,副教授,博士生导师,工程力学系副主任1980年1月生,山东泰安人,中美联合培养博士。
Email:bwang@sdu.edu.cn
中国力学学会会员
山东省力学学会理事
教育部学位与研究生教育评估 评审专家
波兰自然科学基金 国际评审专家
领域内权威期刊IJSS, IJES, IJMS, European Journal of Mechanics-A/Solids (EJMSOL),Physica E,Composite Structure,力学学报,固体力学学报 等40+ 期刊 审稿人
教育经历Education Background 工作经历Work Experience
2008.92011.6
山东大学工程力学博士2002.92005.3
西安交通大学工程力学硕士1998.92002.7
西安交通大学工程力学学士1995.91998.7
山东省泰安英雄山中学 2016.9至今
山东大学土建与水利学院 工程力学系副教授2011.7至今
山东大学讲师2005.72008.8
中国兵器工业集团第五三研究所仿真中心研究方向Research Focus 社会兼职Social Affiliations
微纳米结构的力学行为介电材料的力电耦合及其挠曲电特性智能材料与结构的力学行为研究微纳米结构的多尺度理论方法大型机械或工程结构的有限元分析、评估与优化设计。建筑废弃物的绿色回收再利用暂无内容版权所有?山东大学 地址:中国山东省济南市山大南路27号 邮编:250100
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发表论文 科研项目 研究领域 著作成果 科研团队 专利 --教学研究
教学资源 授课信息 教学成果获奖信息
招生信息
学生信息
我的相册
教师博客
王炳雷
个人信息Personal Information
副教授博士生导师性别:男
毕业院校:山东大学/Columbia University
学历:研究生(博士)毕业
学位:工学博士学位
在职信息:在职
所在单位:土建与水利学院
入职时间:2011-07-18
-->学科:固体力学
办公地点:山东大学千佛山校区图东楼102D
电子邮箱:bwang@sdu.edu.cn
扫描关注当前位置:王炳雷的主页>>科学研究
发表论文
学术论文(*为通讯作者):
(1) ESI 高被引论文
Binglei Wang, Junfeng Zhao, Shenjie Zhou. A micro scale Timoshenko beam model based on strain gradient elasticity theory. European Journal of Mechanics - A/Solids, 29: 591-599 (2010). (PDF)
(2) 期刊论文
[35].陈玲玲,杨旭,刘洋,王炳雷*。全应变梯度挠曲电纳米梁有限单元法研究。计算力学学报 37(5): 545-552 (2020)。(PDF)
[34].Lingling Chen, Yang Liu, Shenjie Zhou, Binglei Wang*.The reformulated micro-beam models by incorporating the general strain gradient elasticity theory (GSGET).Applied Mathematical Modelling 90:448-465.(2021). (PDF)
[33].Lingling Chen, Xu Yang, Binglei Wang* and Shengyou Yang*. Nonlinear electromechanical coupling in graded soft materials: Large deformation, instability, and electroactuation. Physical Review E 102(2):023007.(2020).(PDF)
[32].Binglei Wang,ShengyouYang,PradeepSharma.Flexoelectricity as a universal mechanism for energy harvesting from crumpling of thin sheets. Physical Review B 100(3): 035438.(2019). (PDF)
[31]. Xu Yang, Yarong Zhou, Binglei Wang*, Bo Zhang*. A Finite-Element Method of Flexoelectriceffects on Nanoscale Beam. International Journal for Multiscale Computational Engineering, 17(1): 29– 43(2019). (PDF)
[30]. 杨旭,周亚荣,陈玲玲,王炳雷*。基于广义应变梯度理论的纳米梁挠曲电效应研究。固体力学学报1: 52-60 (2019)。(PDF)
[29]. Yarong Zhou, Xu Yang, Dongmei Pan, Binglei Wang*, Improved incorporation of strain gradient elasticity in the flexoelectricity based energy harvesting from nanobeams. Physica E: Low-dimensional Systems and Nanostructures 98:148-158(2018).(PDF)
[28].Zhou Shasha , Zhou Shenjie , Wang Binglei , Li anqing, Analysis of surface mechanical properties effects on the dynamic characteristics of a circular micro-diaphragm with a distributed mass. Applied Mathematical Modelling, 41: 462-473(2017).(PDF)
[27]. Long Zhang, Binglei Wang*, Shenjie Zhou, Yiguo Xue. Modeling the Size-Dependent Nanostructures: Incorporating the Bulk and Surface Effects. Journal of Nanomechanics and Micromechanics, 7(2): 04016012 (2017).(PDF)
[26]. Long Zhang, Binbin Liang, Shenjie Zhou, Binglei Wang*, Yiguo Xue. An application of a size-dependent model on microplate with elastic medium based on strain gradient elasticity theory. Meccanica. 52(1): 251-262 (2017).(PDF)
[25]. Tenghao Yin, Binglei Wang*, Shenjie Zhou, Moli Zhao. A size-dependent model for beam-like MEMS driven by electrostatic and piezoelectric forces: A variational approach. Physica E: Low-dimensional Systems and Nanostructures. 84:46-54.(2016).(PDF)
[24]. Binglei Wang*, Shenghua Huang, Junfeng Zhao, Shenjie Zhou. Reconsiderations on boundary conditions of Kirchhoff micro-plate model based on a strain gradient elasticity theory. Applied Mathematical Modelling. 40: 7303-7317 (2016).(PDF)
[23]. Shenjie Zhou, Anqing Li, and Binglei Wang. A reformulation of constitutive relations in the strain gradient elasticity theory for isotropic materials. International Journal of Solids and Structures, 80:28-37 (2016).(PDF)
[22]. 梁斌斌,张龙,王炳雷*,周慎杰。考虑卡西米尔力的静电激励NEMS吸合特性及其尺寸效应研究。固体力学学报37(3): 247-253 (2016)。(PDF)
[21]. 梁斌斌,张龙,王炳雷*,周慎杰。拟弧长延拓法在静电激励MEMS吸合特性研究中的应用。应用数学和力学36(4): 386-392 (2015)。(PDF)
[20]. Long Zhang,Binglei Wang*,Binbin Liang, Shenjie Zhou,Yiguo Xue. A Size-Dependent Finite element Model for a Micro/Nanoscale Timoshenko Beam. International Journal for Multiscale Computational Engineering, 13 (6): 491–506 (2015).(PDF)
[19]. Binbin Liang, Long Zhang, Binglei Wang*, Shenjie Zhou. A variational size-dependent model for electrostatically actuated NEMS incorporating nonlinearities and Casimir force. Physica E: Low-dimensional Systems and Nanostructures. 71: 21-30 (2015).(PDF)
[18]. Yue Xiao, Binglei Wang*, Shenjie Zhou. Pull-in voltage analysis of electrostatically actuated MEMS with piezoelectric layers: A size-dependent model. Mechanics Research Communications. 66: 7-14 (2015).(PDF)
[17]. Binglei Wang*, Mingchao Liu, Junfeng Zhao,Shenjie Zhou. A size-dependent Reddy–Levinson beam model based on a strain gradient elasticity theory. Meccanica, 49(6): 1427-1441(2014).(PDF)
[16]. Anqing Li, Shenjie Zhou, Shasha Zhou, Binglei Wang. A size-dependent bilayered microbeam model based on strain gradient elasticity theory. Composite Structures, 108: 259-266 (2014).(PDF)
[15]. Anqing Li, Shenjie Zhou, Shasha Zhou, Binglei Wang A size-dependent model for bi-layered Kirchhoff micro-plate basedon strain gradient elasticity theoryComposite Structures 113: 272–280 (2014).(PDF)
[14]. Binglei Wang, Shenjie Zhou, Junfeng Zhao, Xi Chen. Pull-in Instability of Circular Plate MEMS: A New Model Based on Strain Gradient Elasticity Theory. International Journal of Applied Mechanics,4(1). 1250003 (12pages) (2012).(PDF)
[13]. Binglei Wang, Shenjie Zhou, Junfeng Zhao, Xi Chen. Analysis of wave propagation in micro/nanobeam-like structures: A size-dependent model. Acta Mechanica Sinica. 28(6): 1659-1667, (2012).(PDF)
[12]. Yuan Yan, Binglei Wang, Jie Yin, Xi Chen. Spontaneous Buckling Pattern of a Constrained Membrane Thin Film. Applied Physics A: Materials Science & Processing, 107(4): 761-767 (2012).(PDF)
[11]. Baoxing Xu, Binglei Wang,Xi Chen. Temperature dependence of fluid transport in nanopores. The Journal of chemical physics,136(18): 184701. (2012).(PDF)
[10]. Junfeng Zhao, Shenjie Zhou, Binglei Wang, Xiping Wang. Nonlinear MicroBeam Model based on Strain Gradient Theory. Applied Mathematical Modelling,36(6): 2674-2686 (2012).(PDF)
[9]. 赵俊峰,周慎杰,王炳雷,王锡平.应变梯度对静电力驱动微梁吸合电压的影响. 机械强度,34:510-515. (2012)。(PDF)
[8]. Binglei Wang, Shenjie Zhou, Junfeng Zhao, Xi Chen. A Size-Dependent Kirchhoff Micro-Plate Model based on Strain Gradient Elasticity Theory. European Journal of Mechanics - A/Solids, 30: 517-524 (2011).(PDF)
[7]. Binglei Wang, Shenjie Zhou, Junfeng Zhao, Xi Chen. Size-dependent pull-in instability of electrostatically actuated microbeam-based MEMS. Journal of Micromechanics and Microengineering, 21: 027001 (6pp) (2011).(PDF)
[6]. Binglei Wang, Shenjie Zhou, Junfeng Zhao, Xi Chen. Pull-in instability analysis of electrostatically actuated microplate with rectangular shape. International Journal of Precision Engineering and Manufacturing, 12(6): 1085-1094 (2011).(PDF)
[5]. 王炳雷,周慎杰,赵俊峰,陈曦.静电激励MEMS微结构吸合电压尺寸效应研究.固体力学学报, 32(6) 541-548. (2011)。(PDF)
[4]. Binglei Wang, Junfeng Zhao, Shenjie Zhou. A micro scale Timoshenko beam model based on strain gradient elasticity theory. European Journal of Mechanics - A/Solids, 29: 591-599 (2010).(PDF)
[3]. 王炳雷,李树虎,陈以蔚. FRP在大型风力发电机叶片中的应用.《工程塑料应用》36(4): 76-79(2008)。(PDF)
[2]. 王炳雷,田晓耕,沈亚鹏.磁场对铁磁结构动态特性的影响.实验力学,20(3): 257-264 (2005)。(PDF)
[1]. Binglei Wang, Changqing Chen, Yapeng Shen. A micromechanics-based finite element model for the constitutive behavior of polycrystalline ferromagnets. Acta Mechanica Sinica 22(3): 257-264 (2006).(PDF)
(3) 学术会议论文
[6]. Xu Yang, Yarong Zhou, Kunyu Yao, Binglei Wang*. The Flexoelectric Effect of Nanobeam Based on a Reformulated Strain Gradient Elasticity. 2019 Symposium on Piezoelectrcity, Acoustic Waves and Device Applications (SPAWDA). Proceedings, 2019: 4 pp.
[5]. 2017年7月24日-28日,美国波士顿,会议:54th Annual Meeting of the Society of Engineering Science and ASME-AMD Joint Conference (SES 2017)。邀请主题报告题目:Nanobeam-based elastomer with Flexoelectricity: Nonlinearity and Size-dependency。
[4]. 2016年8月21日-26日,加拿大,蒙特利尔,会议:24th International Congress of Theoretical and Applied Mechanics(ICATAM2016)。邀请报告题目:Size-dependent nonlinear behavior for electrostatic actuated NEMS with casimir force。
[3]. Binglei Wang, Shenjie Zhou, Junfeng Zhao. Size-dependent models for Electrostatically Actuated MEMS. The 23rd International Congress of Theoretical and Applied Mechanics (ICTAM), Beijing, P.R. China, 2012.08.19-08.24.
[2]. 王炳雷,赵俊峰,周慎杰.考虑应变梯度影响的Kirchhoff微板的尺寸效应研究. 力学与工程应用(第十四卷);中国力学学会北方七省市区力学与工程应用学术大会(山东威海),2012。
[1]. 王炳雷,周慎杰,赵俊峰,陈曦.考虑应变梯度影响的静电驱动MEMS微结构尺寸效应研究.2011 中国力学大会。
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张龙.Modeling the size-dependent nanostructures: Incorporating the bulk and surface effects.J. Nanomech. Micromech.,7,2020.王炳雷and杨旭.THE FLEXOELECTRIC EFFECT OF NANOBEAM BASED ON A REFORMULATED STRAIN GRADIENT ELASTICITY.2020.周慎杰,王炳雷and李安庆.A size-dependent bilayered microbeam model based on strain gradient elasticity theory.composite structures,108,256,2019.周慎杰,王炳雷and李安庆.A size-dependent model for bi-layered Kirchhoff micro-plate based on strain gradient elasticity theory.composite structures,113,272,2019.周慎杰,王炳雷,王锡平and赵俊峰.Nonlinear microbeam model based on strain gradient theory.Applied Mathematical Modelling,36,2674,2019.王炳雷.Flexoelectricity as a universal mechanism for energy harvesting from crumpling of thin sheets.Physical review B,100,35438,2019. 版权所有?山东大学 地址:中国山东省济南市山大南路27号 邮编:250100
查号台:(86)-**
值班电话:(86)-** 建设维护:山东大学信息化工作办公室?
技术支持qq群:**
手机版访问量:次
登录山东大学English
首页
科学研究
发表论文 科研项目 研究领域 著作成果 科研团队 专利 --教学研究
教学资源 授课信息 教学成果获奖信息
招生信息
学生信息
我的相册
教师博客
王炳雷
个人信息Personal Information
副教授博士生导师性别:男
毕业院校:山东大学/Columbia University
学历:研究生(博士)毕业
学位:工学博士学位
在职信息:在职
所在单位:土建与水利学院
入职时间:2011-07-18
-->学科:固体力学
办公地点:山东大学千佛山校区图东楼102D
电子邮箱:bwang@sdu.edu.cn扫描关注
发表论文
当前位置:王炳雷的主页>>科学研究>>发表论文学术论文(*为通讯作者):
(1) ESI 高被引论文
Binglei Wang, Junfeng Zhao, Shenjie Zhou. A micro scale Timoshenko beam model based on strain gradient elasticity theory. European Journal of Mechanics - A/Solids, 29: 591-599 (2010). (PDF)
(2) 期刊论文
[35].陈玲玲,杨旭,刘洋,王炳雷*。全应变梯度挠曲电纳米梁有限单元法研究。计算力学学报 37(5): 545-552 (2020)。(PDF)
[34].Lingling Chen, Yang Liu, Shenjie Zhou, Binglei Wang*.The reformulated micro-beam models by incorporating the general strain gradient elasticity theory (GSGET).Applied Mathematical Modelling 90:448-465.(2021). (PDF)
[33].Lingling Chen, Xu Yang, Binglei Wang* and Shengyou Yang*. Nonlinear electromechanical coupling in graded soft materials: Large deformation, instability, and electroactuation. Physical Review E 102(2):023007.(2020).(PDF)
[32].Binglei Wang,ShengyouYang,PradeepSharma.Flexoelectricity as a universal mechanism for energy harvesting from crumpling of thin sheets. Physical Review B 100(3): 035438.(2019). (PDF)
[31]. Xu Yang, Yarong Zhou, Binglei Wang*, Bo Zhang*. A Finite-Element Method of Flexoelectriceffects on Nanoscale Beam. International Journal for Multiscale Computational Engineering, 17(1): 29– 43(2019). (PDF)
[30]. 杨旭,周亚荣,陈玲玲,王炳雷*。基于广义应变梯度理论的纳米梁挠曲电效应研究。固体力学学报1: 52-60 (2019)。(PDF)
[29]. Yarong Zhou, Xu Yang, Dongmei Pan, Binglei Wang*, Improved incorporation of strain gradient elasticity in the flexoelectricity based energy harvesting from nanobeams. Physica E: Low-dimensional Systems and Nanostructures 98:148-158(2018).(PDF)
[28].Zhou Shasha , Zhou Shenjie , Wang Binglei , Li anqing, Analysis of surface mechanical properties effects on the dynamic characteristics of a circular micro-diaphragm with a distributed mass. Applied Mathematical Modelling, 41: 462-473(2017).(PDF)
[27]. Long Zhang, Binglei Wang*, Shenjie Zhou, Yiguo Xue. Modeling the Size-Dependent Nanostructures: Incorporating the Bulk and Surface Effects. Journal of Nanomechanics and Micromechanics, 7(2): 04016012 (2017).(PDF)
[26]. Long Zhang, Binbin Liang, Shenjie Zhou, Binglei Wang*, Yiguo Xue. An application of a size-dependent model on microplate with elastic medium based on strain gradient elasticity theory. Meccanica. 52(1): 251-262 (2017).(PDF)
[25]. Tenghao Yin, Binglei Wang*, Shenjie Zhou, Moli Zhao. A size-dependent model for beam-like MEMS driven by electrostatic and piezoelectric forces: A variational approach. Physica E: Low-dimensional Systems and Nanostructures. 84:46-54.(2016).(PDF)
[24]. Binglei Wang*, Shenghua Huang, Junfeng Zhao, Shenjie Zhou. Reconsiderations on boundary conditions of Kirchhoff micro-plate model based on a strain gradient elasticity theory. Applied Mathematical Modelling. 40: 7303-7317 (2016).(PDF)
[23]. Shenjie Zhou, Anqing Li, and Binglei Wang. A reformulation of constitutive relations in the strain gradient elasticity theory for isotropic materials. International Journal of Solids and Structures, 80:28-37 (2016).(PDF)
[22]. 梁斌斌,张龙,王炳雷*,周慎杰。考虑卡西米尔力的静电激励NEMS吸合特性及其尺寸效应研究。固体力学学报37(3): 247-253 (2016)。(PDF)
[21]. 梁斌斌,张龙,王炳雷*,周慎杰。拟弧长延拓法在静电激励MEMS吸合特性研究中的应用。应用数学和力学36(4): 386-392 (2015)。(PDF)
[20]. Long Zhang,Binglei Wang*,Binbin Liang, Shenjie Zhou,Yiguo Xue. A Size-Dependent Finite element Model for a Micro/Nanoscale Timoshenko Beam. International Journal for Multiscale Computational Engineering, 13 (6): 491–506 (2015).(PDF)
[19]. Binbin Liang, Long Zhang, Binglei Wang*, Shenjie Zhou. A variational size-dependent model for electrostatically actuated NEMS incorporating nonlinearities and Casimir force. Physica E: Low-dimensional Systems and Nanostructures. 71: 21-30 (2015).(PDF)
[18]. Yue Xiao, Binglei Wang*, Shenjie Zhou. Pull-in voltage analysis of electrostatically actuated MEMS with piezoelectric layers: A size-dependent model. Mechanics Research Communications. 66: 7-14 (2015).(PDF)
[17]. Binglei Wang*, Mingchao Liu, Junfeng Zhao,Shenjie Zhou. A size-dependent Reddy–Levinson beam model based on a strain gradient elasticity theory. Meccanica, 49(6): 1427-1441(2014).(PDF)
[16]. Anqing Li, Shenjie Zhou, Shasha Zhou, Binglei Wang. A size-dependent bilayered microbeam model based on strain gradient elasticity theory. Composite Structures, 108: 259-266 (2014).(PDF)
[15]. Anqing Li, Shenjie Zhou, Shasha Zhou, Binglei Wang A size-dependent model for bi-layered Kirchhoff micro-plate basedon strain gradient elasticity theoryComposite Structures 113: 272–280 (2014).(PDF)
[14]. Binglei Wang, Shenjie Zhou, Junfeng Zhao, Xi Chen. Pull-in Instability of Circular Plate MEMS: A New Model Based on Strain Gradient Elasticity Theory. International Journal of Applied Mechanics,4(1). 1250003 (12pages) (2012).(PDF)
[13]. Binglei Wang, Shenjie Zhou, Junfeng Zhao, Xi Chen. Analysis of wave propagation in micro/nanobeam-like structures: A size-dependent model. Acta Mechanica Sinica. 28(6): 1659-1667, (2012).(PDF)
[12]. Yuan Yan, Binglei Wang, Jie Yin, Xi Chen. Spontaneous Buckling Pattern of a Constrained Membrane Thin Film. Applied Physics A: Materials Science & Processing, 107(4): 761-767 (2012).(PDF)
[11]. Baoxing Xu, Binglei Wang,Xi Chen. Temperature dependence of fluid transport in nanopores. The Journal of chemical physics,136(18): 184701. (2012).(PDF)
[10]. Junfeng Zhao, Shenjie Zhou, Binglei Wang, Xiping Wang. Nonlinear MicroBeam Model based on Strain Gradient Theory. Applied Mathematical Modelling,36(6): 2674-2686 (2012).(PDF)
[9]. 赵俊峰,周慎杰,王炳雷,王锡平.应变梯度对静电力驱动微梁吸合电压的影响. 机械强度,34:510-515. (2012)。(PDF)
[8]. Binglei Wang, Shenjie Zhou, Junfeng Zhao, Xi Chen. A Size-Dependent Kirchhoff Micro-Plate Model based on Strain Gradient Elasticity Theory. European Journal of Mechanics - A/Solids, 30: 517-524 (2011).(PDF)
[7]. Binglei Wang, Shenjie Zhou, Junfeng Zhao, Xi Chen. Size-dependent pull-in instability of electrostatically actuated microbeam-based MEMS. Journal of Micromechanics and Microengineering, 21: 027001 (6pp) (2011).(PDF)
[6]. Binglei Wang, Shenjie Zhou, Junfeng Zhao, Xi Chen. Pull-in instability analysis of electrostatically actuated microplate with rectangular shape. International Journal of Precision Engineering and Manufacturing, 12(6): 1085-1094 (2011).(PDF)
[5]. 王炳雷,周慎杰,赵俊峰,陈曦.静电激励MEMS微结构吸合电压尺寸效应研究.固体力学学报, 32(6) 541-548. (2011)。(PDF)
[4]. Binglei Wang, Junfeng Zhao, Shenjie Zhou. A micro scale Timoshenko beam model based on strain gradient elasticity theory. European Journal of Mechanics - A/Solids, 29: 591-599 (2010).(PDF)
[3]. 王炳雷,李树虎,陈以蔚. FRP在大型风力发电机叶片中的应用.《工程塑料应用》36(4): 76-79(2008)。(PDF)
[2]. 王炳雷,田晓耕,沈亚鹏.磁场对铁磁结构动态特性的影响.实验力学,20(3): 257-264 (2005)。(PDF)
[1]. Binglei Wang, Changqing Chen, Yapeng Shen. A micromechanics-based finite element model for the constitutive behavior of polycrystalline ferromagnets. Acta Mechanica Sinica 22(3): 257-264 (2006).(PDF)
(3) 学术会议论文
[6]. Xu Yang, Yarong Zhou, Kunyu Yao, Binglei Wang*. The Flexoelectric Effect of Nanobeam Based on a Reformulated Strain Gradient Elasticity. 2019 Symposium on Piezoelectrcity, Acoustic Waves and Device Applications (SPAWDA). Proceedings, 2019: 4 pp.
[5]. 2017年7月24日-28日,美国波士顿,会议:54th Annual Meeting of the Society of Engineering Science and ASME-AMD Joint Conference (SES 2017)。邀请主题报告题目:Nanobeam-based elastomer with Flexoelectricity: Nonlinearity and Size-dependency。
[4]. 2016年8月21日-26日,加拿大,蒙特利尔,会议:24th International Congress of Theoretical and Applied Mechanics(ICATAM2016)。邀请报告题目:Size-dependent nonlinear behavior for electrostatic actuated NEMS with casimir force。
[3]. Binglei Wang, Shenjie Zhou, Junfeng Zhao. Size-dependent models for Electrostatically Actuated MEMS. The 23rd International Congress of Theoretical and Applied Mechanics (ICTAM), Beijing, P.R. China, 2012.08.19-08.24.
[2]. 王炳雷,赵俊峰,周慎杰.考虑应变梯度影响的Kirchhoff微板的尺寸效应研究. 力学与工程应用(第十四卷);中国力学学会北方七省市区力学与工程应用学术大会(山东威海),2012。
[1]. 王炳雷,周慎杰,赵俊峰,陈曦.考虑应变梯度影响的静电驱动MEMS微结构尺寸效应研究.2011 中国力学大会。
附件:
33-Chen LL-PhysRevE-2020.pdf
全应变梯度挠曲电纳米梁有限单元法研究(1).pdf
18-xiao yue-MRC-2015-1.pdf
31-Yang xu FEM.pdf
12-2012-Spontaneous Buckling Pattern of a Constrained Membrane Thin Film.pdf
34-AMM-WANG2020.pdf
17-R-L beam.pdf
29-Zhou Yarong-Physica E2018.pdf
21-拟弧长延拓法在静电激励MEMS吸合特性研究中的应用.pdf
22-考虑卡西米尔力的静电激励NEMS吸合特性及其尺寸效应研究.pdf
26-zhang long 2nd.pdf
15-li anqingplate.pdf
19-PHYSICS E liang.pdf
20-ZHANG LONG FEM.pdf
16-A size-dependent bilayered microbeam model based on strain gradient elasticity theory.pdf
23-Zhou-IJSS-2016.pdf
13-Analysis of wave propagation in micro beam-like structures.pdf
25-Yin tenghao.pdf
ZHOU shasha-AMM-2017.pdf
基于广义应变梯度理论的纳米梁挠曲电效应研究_杨旭.pdf
24-Huang SH -PLATE-AMM.pdf
2010-wang timoshenko beam.pdf
27-Zhang long 3rd.pdf
14-2012-IJAM-circular plate with SG.pdf
10-Nonlinear microbeam model based on strain gradient theory.pdf
6-WANGBL-IJPEM.pdf
4-2010-wang timoshenko beam.pdf
1-Wang2006_Article_AMicromechanics-basedFiniteEle.pdf
5-2010-190.pdf
2-磁场对铁磁结构动态特性的影响_王炳雷.pdf
32-PhysRevB.Wang_.pdf
9-应变梯度对静电力驱动微梁吸合电压的影响_赵俊峰.pdf
7-2nd_Wang_JMM_size-dependent pull-in beam.pdf
11-2012-Temperature dependence of fluid transport in nanopores.pdf
3-FRP在大型风力发电机叶片中的应用_王炳雷.pdf
8-3th-A size-dependent Kirchhoff micro-plate model based on strain gradient elasticity theory .pdf
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王炳雷
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副教授博士生导师性别:男
毕业院校:山东大学/Columbia University
学历:研究生(博士)毕业
学位:工学博士学位
在职信息:在职
所在单位:土建与水利学院
入职时间:2011-07-18
-->学科:固体力学
办公地点:山东大学千佛山校区图东楼102D
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