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个人简介

教育经历 1999.3 -- 2002.6 大连理工大学 固体力学 博士 1996.9 -- 1999.3 内蒙古工业大学 固体力学 硕士 1992.9 -- 1996.7 内蒙古工业大学 化工机械 学士 工作经历 2004.9 -- 至今 大连理工大学 副教授 2002.7 -- 2004.7 天津大学 博士后--中文主页--首页

研究领域

[1] 研究领域:固体力学,实验力学,复合材料力学,工程力学,光测力学 [2]结构分析光测力学:条纹识别与图像处理; 计算机视觉——运动与变形表征; 非接触全场变形测量; 深度学习; [3]智能材料与结构力学:纳米复合材料的微/纳米尺度变形表征; 智能材料和超结构设计及其力学行为与失效机理; 分子动力学模拟; [4]纤维、试件、构件、部件多级复合材料实验; 织物复合材料载荷传递行为与冲击吸能机制; 生物复合材料力学行为; 实验与数值结合的反问题分析; 有限元仿真; [5]能源复合材料结构设计:复合材料结构电容器;复合材料结构电池;多物理场仿真;

近期论文

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[1]锁刘佳.Study on sliding-window length based on Rayleigh backscattering spectrum correlation in distribut...[J],OPTICAL FIBER TECHNOLOGY,2022,2019(47):126-132 [2]Fang, Q. C..Study on Single-yarn Pullout Test of Ballistic Resistant Fabric under Different Preloads[A],1ST INTERNATIONAL WORKSHOP ON MATERIALS SCIENCE AND MECHANICAL ENGINEERING,2022,281(1) [3]白瑞祥.Study on welding sequence of butt-welded structures based on equivalent heat source parameter[J],INTERNATIONAL JOURNAL OF PRESSURE VESSELS AND PIPING,2022,163:15-22 [4]Liu, Chen.Study on mode-I fracture toughness of composite laminates with curved plies applied by automate...[J],MATERIALS DESIGN,2022,195 [5]Zhang, X. Z..Study on tensile properties of composite laminates with gap defects[A],2ND INTERNATIONAL WORKSHOP ON MATERIALS SCIENCE AND MECHANICAL ENGINEERING (IWMSME2018),2022,504(1) [6]Jingjing Guo.Study on low-velocity impact and compression failure of composite foam sandwich panel[A],2018 International Conference on Modeling, Simulation and Optimization (MSO),2022,474-478 [7]雷振坤.Study of shear transfer in Al/epoxy joint by digital photoelasticity[J],OPTICS AND LASERS IN ENGINEERING,2022,47(6):701-707 [8]Zhao, Yan-Ru.Study on bending damage and failure of basalt fiber reinforced concrete under freeze-thaw cycle...[J],CONSTRUCTION AND BUILDING MATERIALS,2022,163:460-470 [9]Kewang Peng.Study on 180o peel test of interface adhesive honeycomb sandwich structure[A],2018 International Conference on Modeling, Simulation and Optimization (MSO),2022,479-483 [10]Liang, Ji-Ran.Study of the porosity of porous silicon and the distribution of residual stress along cross-secti...[J],Yadian Yu Shengguang/Piezoelectrics and Acoustooptics,2022,28(4):443-445 [11]Chen, Y..Study on Elastoplastic Crack Propagation Behavior of Laser-welded 6061 Aluminum Alloy Using Dig...[A],1ST INTERNATIONAL WORKSHOP ON MATERIALS SCIENCE AND MECHANICAL ENGINEERING,2022,281(1) [12]Qin, Fuyong.Stress transfer of single yarn drawing in soft fabric studied by micro Raman spectroscopy[J],COMPOSITES PART A APPLIED SCIENCE AND MANUFACTURING,2022,112:134-141 [13]雷振坤.Stress transfer of single fiber/microdroplet tensile test studied by micro-Raman spectroscopy[J],COMPOSITES PART A APPLIED SCIENCE AND MANUFACTURING,2022,39(1):113-118 [14]雷振坤.Stress Transfer of a Kevlar 49 Fiber Pullout Test Studied by Micro-Raman Spectroscopy[J],APPLIED SPECTROSCOPY,2022,67(6):600-605 [15]雷振坤.Stress transfer in microdroplet tensile test: PVC-coated and uncoated Kevlar-29 single fiber[J],OPTICS AND LASERS IN ENGINEERING,2022,48(11,SI):1089-1095 [16]白瑞祥.Shear deformation and energy absorption analysis of flexible fabric in yarn pullout test[J],COMPOSITES PART A APPLIED SCIENCE AND MANUFACTURING,2022,128 [17]雷振坤.Residual stress on surface and cross-section of porous silicon studied by micro-Raman spectrosc...[J],Chinese Physics Letters,2022,22(4):984-986 [18]Qiu, Wei.Residual Stress in Porous Silicon Film with Micro-Raman Spectroscopy[A],4th International Conference on Advances in Experimental Mechanics,2022,7522 [19]王奇.Raman measurements of Kevlar-29 fiber pull-out test at different strain levels[A],International Conference on Experimental Mechanics 2008, ICEM 2008,2022,7375 [20]白瑞祥.Prediction of Welding Deformation and Residual Stress of Stiffened Plates Based on Experiments[A],1ST INTERNATIONAL WORKSHOP ON MATERIALS SCIENCE AND MECHANICAL ENGINEERING,2022,281(1) [21]Chathuranga, Hiran.Preparation of bioinspired graphene oxide/PMMA nanocomposite with improved mechanical properties[J],COMPOSITES SCIENCE AND TECHNOLOGY,2022,216 [22]Sun, Zhenya.Prediction of failure behavior of composite hat-stiffened panels under in-plane shear using artif...[J],COMPOSITE STRUCTURES,2022,272 [23]Shen, Yuxin.Optical selective encryption based on the FRFCM algorithm and face biometric for the medical imag...[J],OPTICS AND LASER TECHNOLOGY,2022,138 [24]雷振坤.Optical measurement on dynamic buckling behavior of stiffened composite panels under in-plane s...[J],OPTICS AND LASERS IN ENGINEERING,2022,87:111-119 [25]雷振坤.Optical experimental and numerical study on compression buckling behaviors of composite panel sti...[A],21st International Conference on Composite Materials, ICCM 2017,2022,2017-August [26]雷振坤.Optical evaluation of the buckling behavior of stiffened composite laminates[J],COMPOSITES PART A APPLIED SCIENCE AND MANUFACTURING,2022,43(11):1850-1859 [27]Yun, Hai.Numerical simulation of isopachic parameter determined by phase-stepping interferometric photoela...[J],Chinese Optics Letters,2022,4(3):164-166 [28]雷振坤.Numerical and experimental study on stability of aluminum alloy riveted and stiffened panels unde...[A],The 2016 International Conference on Mechanical, Control and Computer Engineering,2022 [29]Wang, Dawei.Numerical and experimental study on stability of aluminium alloy riveted and stiffened panels u...[A],CIVIL, ARCHITECTURE AND ENVIRONMENTAL ENGINEERING, VOLS 1 AND 2,2022,531-534 [30]白瑞祥.Numerical and experimental study of dynamic buckling behavior of a J-stiffened composite panel ...[J],COMPOSITE STRUCTURES,2022,166:96-103 [31]Sun, Zhenya.Numerical and experimental study of buckling behavior of a composite hat-stiffened panel under in...[A],Journal of Physics: Conference Series,2022,1699(1) [32]雷振坤.Numerical analysis of phase-stepping interferometric photoelasticity for plane stress separatio...[J],OPTICS AND LASERS IN ENGINEERING,2022,45(1):77-82 [33]江灏.Noise-insensitive contour method for residual stress measurement in laser butt welding[J],THIN-WALLED STRUCTURES,2022,165 [34]雷振坤.Noncontact optical measurement of CTOA and CTOD for interface crack in DCB test[J],OPTICS AND LASERS IN ENGINEERING,2022,50(7):964-970 [35]Zhou, Canlin.Modified Fourier transform profilometry based on digital time-multiplexing technique[A],SIXTH INTERNATIONAL CONFERENCE ON OPTICAL AND PHOTONIC ENGINEERING (ICOPEN 2018),2022,10827 [36]雷振坤.Multi-frequency inverse-phase fringe projection profilometry for nonlinear phase error compensa...[J],OPTICS AND LASERS IN ENGINEERING,2022,66:249-257 [37]Zou, Jianchao.Damage and failure analysis of composite stiffened panels under low-velocity impact and compressi...[J],COMPOSITE STRUCTURES,2022,262 [38]Jianchao Zou.Damage and failure analysis of composite stiffened panels under low-velocity impact and compressi...[J],COMPOSITE STRUCTURES,2022,113333- [39]Guo, Zhenfei.CPINet: Parameter identification of path-dependent constitutive model with automatic denoising ba...[J],EUROPEAN JOURNAL OF MECHANICS A-SOLIDS,2022,90 [40]白瑞祥.Compression after impact behavior of composite foam-core sandwich panels[J],COMPOSITE STRUCTURES,2022,225 [41]雷振坤.Calibration of elasto-optic constant in digital gradient sensing method[A],International Symposium on Photonics and Optoelectronics,2022,9233 [42]Liu, Xingyu.Buckling measurement and numerical analysis of M-type ribs stiffened composite panel[J],THIN WALLED STRUCTURES,2022,85:117-124 [43]白瑞祥.Buckling and damage analysis of composite advanced grid stiffened panel by experimental and finit...[J],东北大学学报 自然科学版,2022,34(SUPPL.2):224-228 [44]Wu, W..Buckling analysis of stiffened composite panels with variable stiffness[A],2ND INTERNATIONAL WORKSHOP ON MATERIALS SCIENCE AND MECHANICAL ENGINEERING (IWMSME2018),2022,504(1) [45]Zhang, Cong.Buckling analysis of composite laminates with a circular hole[A],Journal of Physics: Conference Series,2022,1699(1) [46]Hao, Fugui.Batch denoising of ESPI fringe patterns based on convolutional neural network[J],APPLIED OPTICS,2022,58(13):3338-3346 [47]Chen, Mingming.Binarization of ESPI fringe patterns based on local entropy[J],OPTICS EXPRESS,2022,27(22):32378-32391 [48]陈雷.Binarization for low-quality ESPI fringe patterns based on preprocessing and clustering[J],Applied Optics,2022,60(31):9866-9874 [49]雷振坤.Automatic evaluation of photoelastic fringe constant by the nonlinear least-squares method[J],OPTICS AND LASER TECHNOLOGY,2022,41(8):985-989 [50]雷振坤.A numerical comparison of real-time phase-shifting algorithms[J],OPTICS AND LASERS IN ENGINEERING,2022,42(4):395-401 [51]白瑞祥.A novel 2nd-order shape function based digital image correlation method for large deformation m...[J],OPTICS AND LASERS IN ENGINEERING,2022,90:48-58 [52]Qiu Wei.A New Theoretical Model of a Carbon Nanotube Strain Sensor[J],Chinese Physics Letters,2022,26(8) [53]白瑞祥.Virtual testing method on graphite fiber/resin single-filament-composite test[J],COMPOSITE INTERFACES,2022,1-19 [54]白瑞祥.Virtual field method for identifying elastic-plastic constitutive parameters of aluminum alloy ...[J],OPTICS AND LASERS IN ENGINEERING,2022,110:122-131 [55]Zhao, Y. R..Interfacial stress transfer behavior in a specially-shaped fiber/matrix pullout test[J],Acta Mechanica Sinica,2022,26(1):113-119 [56]雷振坤.Interfacial Micromechanics in Fibrous Composites: Design, Evaluation, and Models[J],Scientific World Journal,2022,2014:282436 [57]郑跃滨.Lamb waves and electro-mechanical impedance based damage detection using a mobile PZT transducer ...[J],ULTRASONICS,2022,92:13-20 [58]白瑞祥.Local zone-wise elastic-plastic constitutive parameters of Laser-welded aluminium alloy 6061 us...[J],OPTICS AND LASERS IN ENGINEERING,2022,101:28-34 [59]白瑞祥.Investigation on welding sequence of I-beam by hybrid inversion[J],MARINE STRUCTURES,2022,62:23-39

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