温建锋 收藏

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( 任职于 机械与动力工程学院)

个人简介 2014年于华东理工大学动力工程及工程热物理专业获工学博士学位。2011年9月至2012年9月赴美国Texas A&M University机械工程系联合培养,2015年11月至2017年12月于美国Texas A&M University材料科学与工程系从事博士后研究工作。曾获美国机械工程师学会ASME PVP学生论文竞赛博士组冠军、中国机械工程学会压力容器分会优秀博士学位论文卓越奖,入选上海市青年科技英才扬帆计划、上海市浦江人才计划(A类)等。主持国家自然科学基金面上项目、青年科学基金项目、中国博士后科学基金等8项科研项目,已在J Mech Phys So...   详细>>

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44 条 记 录,以下是 1-30

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Rapid fabrication of physically robust hydrogels被引量:267收藏 分享
作者:Bao, Bingkun Zeng, Qingmei Li, Kai Wen, Jianfeng Zhang, Yiqing Zheng, Yongjun Zhou, Renjie Shi, Chutong Chen, Ting Xiao, Chaonan Chen, Baihang Wang, Tao Yu, Kang Sun, Yuan Lin, Qiuning He, Yong Tu, Shantung Zhu, Linyong
机构:Shanghai Jiao Tong Univ;East China Univ Sci & Technol;East China Univ Sci & Technol;East China Univ Sci & Technol;East China Univ Sci & Technol
来源:NATURE MATERIALS  2023
关键词:3D printing - Biocompatibility - Biomimetics - Elastomers - Fabrication - Gels - Nanocomposites - Stability - Tensile strength  
质疑
Ductile failure of flat plates containing two through-wall cracks: Experimental investigation and numerical modeling被引量:56收藏 分享
作者:Zhang, Xue-Wei Wen, Jian-Feng Wang, Tao Zhang, Xian-Cheng Tu, Shan-Tung
机构: Key Laboratory of Pressure Systems and Safety
来源:International Journal of Pressure Vessels and Piping  2021
关键词:Plates (structural components) - Tensile testing - Image correlation - Ductile fracture  
质疑
Effects of the stress state on plastic deformation and ductile failure: Experiment and numerical simulation using a newly designed tension-shear specimen被引量:34收藏 分享
作者:Zhang, Xue-Wei Wen, Jian-Feng Zhang, Xian-Cheng Wang, Xiao-Gang Tu, Shan-Tung
机构:East China Univ Sci & Technol;Hunan Univ
来源:FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES  2019
关键词:ductile fracture   ductility exhaustion   fracture locus   notched plate   positive stress triaxiality   stress state  
质疑
New model for creep damage analysis and its application to creep crack growth simulations被引量:32收藏 分享
作者:Wen, J. -F. Tu, S. -T. Gao, X. -L. Reddy, J. N.
机构:E China Univ Sci & Technol;Texas A&M Univ;Univ Texas Dallas
来源:MATERIALS SCIENCE AND TECHNOLOGY  2014
关键词:Damage   Creep crack growth   Finite element analysis   316 stainless steel   T91 steel  
质疑
Failure mechanism and life correlation of Inconel 718 in high and very high cycle fatigue regimes被引量:31收藏 分享
作者:Yang, Yi-Fan Hu, Hua-Yan Min, Lin Sun, Qian-Tao Song, Miao Zhu, Ming-Liang Wen, Jian-Feng Tu, Shan-Tung
机构:East China Univ Sci & Technol;Shanghai Jiao Tong Univ;Shanghai Inst Aircraft Mech & Control
来源:INTERNATIONAL JOURNAL OF FATIGUE  2023
关键词:Inconel 718   Very high cycle fatigue   Fatigue crack initiation   Transmission electron microscopy   Fatigue life  
质疑
Blade Fatigue Damage Assessment of Floating Offshore Wind Turbine under Extreme Environmental Conditions被引量:28收藏 分享
作者:Dai, Shu Shi, Tao Wang, Hao Tang, Shanran Song, Yue Liang, Yinan Wen, Jianfeng
机构: Shanghai Investigation; School of Mechanical and Power Engineering; Marine Engineering College; School of Naval Architecture and Ocean Engineering
来源:Proceedings of the International Offshore and Polar Engineering Conference  2024
关键词:Aerodynamic loads - Arctic engineering - Damage detection - Fatigue damage - Numerical methods - Offshore oil well production - Offshore wind turbines - Time series - Wind stress - Wind turbine blades  
质疑
New model for creep damage analysis and its application to creep crack growth simulations被引量:27收藏 分享
作者:Wen, J.-F. Tu, S.-T. Gao, X.-L. Reddy, J.N.
机构: Key Laboratory of Pressure Systems and Safety ; Department of Mechanical Engineering; Department of Mechanical Engineering
来源:Materials Science and Technology (United Kingdom)  2014
关键词:Crack propagation - Crack tips - Creep - Austenitic stainless steel  
质疑
Microstructure design strategies to mitigate hydrogen embrittlement in metallic materials被引量:26收藏 分享
作者:Sun, Binhan Dong, Xizhen Wen, Jianfeng Zhang, Xian-Cheng Tu, Shan-Tung
机构:East China Univ Sci & Technol;Max Planck Inst Eisenforsch GmbH;East China Univ Sci & Technol
来源:FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES  2023
关键词:damage tolerance   hydrogen economy   hydrogen embrittlement   metallic materials   microstructure design  
质疑
High-Temperature Defect Assessment for a P91 Reheat Elbow Using FAD and TDFAD Methods被引量:21收藏 分享
作者:Li, Y.X. Wen, J.F. Wang, W. Zhong, W.L. Chen, J.
机构: Key Laboratory of Pressure Systems and Safety; Electric Power Research Institute of Guangdong Power Grid Co.; School of Energy and Power Engineering
来源:Procedia Engineering  2015
关键词:Outages - Chemical industry - Risk assessment - Creep - Fracture - Damage detection  
质疑
Elastic strain energy control of the precipitate free zone around primary carbides in nickel base alloy 725被引量:20收藏 分享
作者:Song, M. Wen, J. -F. Jiao, Z. Was, G. S.
机构:Univ Michigan;East China Univ Sci & Technol;Texas A&M Univ
来源:ACTA MATERIALIA  2016
关键词:Alloy 725   Microstructure   Precipitate free zones (PFZs)   Stress   Finite element (FE)  
质疑
High-temperature creep-fatigue-oxidation behaviors of P92 steel: Evaluation of life prediction models被引量:18收藏 分享
作者:Wang, Kang-Kang Wen, Jian-Feng Xia, Xian-Xi Wang, Run-Zi Zhang, Guo-Dong Zhang, Xian-Cheng Tu, Shan-Tung
机构:East China Univ Sci & Technol;Suzhou Nucl Power Res Inst;Tohoku Univ
来源:FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES  2023
关键词:creep-fatigue   damage model   life assessment   oxidation   P92 steel  
质疑
A study of ultra-low cycle fatigue failure based on a fracture strain energy model被引量:18收藏 分享
作者:Wang, Tao Wen, Jian-Feng Liao, Peng-Peng Zhang, Xian-Cheng Kim, Yun-Jae Tu, Shan-Tung
机构:East China Univ Sci & Technol;Korea Univ
来源:INTERNATIONAL JOURNAL OF FATIGUE  2021
关键词:Ultra-low cycle fatigue (ULCF)   Fracture strain energy   Ductile fracture   Finite Element Analysis   Seismic load  
质疑
Autofrettage and shakedown analyses of an internally pressurized thick-walled spherical shell based on two strain gradient plasticity solutions被引量:16收藏 分享
作者:Wen, J-F. Gao, X-L. Xuan, F-Z. Tu, S-T.
机构:East China Univ Sci & Technol;Southern Methodist Univ
来源:ACTA MECHANICA  2017
关键词:Spheres - Stresses - Plasticity - Shells (structures)  
质疑
Ductile tearing analyses of cracked TP304 pipes using the multiaxial fracture strain energy model and the Gurson-Tvergaard-Needleman model被引量:15收藏 分享
作者:Wang, Tao Wen, Jian-Feng Kim, Yun-Jae Tu, Shan-Tung
机构:East China Univ Sci & Technol;Korea Univ
来源:FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES  2020
关键词:damage mechanics   ductile fracture   finite element method   Gurson-Tvergaard-Needleman model   multiaxial fracture strain energy model  
质疑
Autofrettage and Shakedown Analyses of an Internally Pressurized Thick-Walled Cylinder Based on Strain Gradient Plasticity Solutions被引量:12收藏 分享
作者:Gao, X. -L. Wen, J. -F. Xuan, F. -Z. Tu, S. -T.
机构:So Methodist Univ;E China Univ Sci & Technol
来源:JOURNAL OF APPLIED MECHANICS-TRANSACTIONS OF THE ASME  2015
关键词:thick-walled cylinder   strain gradient plasticity   stress analysis   autofrettage   shakedown   linear hardening   power-law hardening   unified yield criterion   Lame solution   von Mises criterion  
质疑
Effects of post-processing and loading orientation on high-cycle fatigue of selective laser melted Ti-6Al-4V被引量:12收藏 分享
作者:Dong, Nai-Jian Wang, Kang-Kang Wen, Jian-Feng Chen, Bo Tu, Shan-Tung
机构:East China Univ Sci & Technol;Univ Leicester
来源:INTERNATIONAL JOURNAL OF FATIGUE  2024
关键词:High cycle fatigue   Life prediction   Microstructure   Additive manufacturing   Titanium alloy  
质疑
Cyclic deformation behaviors and damage mechanisms in P92 steel under creep-fatigue loading: Effects of hold condition and oxidation被引量:11收藏 分享
作者:Wang, Kang-Kang Wen, Jian-Feng Wang, Run-Zi Ye, Ting Wang, Ji Tan, Jian-Ping Chen, Hao-Feng Zhang, Xian-Cheng Tu, Shan-Tung
机构:East China Univ Sci & Technol;Tohoku Univ;Tohoku Univ;Longyan Univ
来源:INTERNATIONAL JOURNAL OF FATIGUE  2024
关键词:P92 steel   Creep   Fatigue   Oxidation   Damage mechanism  
质疑
Effects of defect size and location on high cycle fatigue life of a maraging stainless steel at ambient and cryogenic temperatures被引量:10收藏 分享
作者:Chang, Dong-Kai Wang, Qiong-Qi Chen, Hui Zhang, Xian-Cheng Wen, Jian-Feng Tu, Shan-Tung
机构:East China Univ Sci & Technol;Xian Aerosp Prop Inst
来源:INTERNATIONAL JOURNAL OF FATIGUE  2022
关键词:High cycle fatigue   Cryogenic temperature   Crack initiation   Defect distribution   Life prediction  
质疑
Creep-fatigue deformation characteristics and life prediction model of Inconel 718 superalloy under hybrid stress-strain-controlled mode被引量:9收藏 分享
作者:Kang, Zitong Wang, Xiaowei Zhou, Weitao Zhang, Tianyu Zhou, Dewen Zhao, Yuchen Wen, Jianfeng Gong, Jianming
机构:Nanjing Tech Univ;Nanjing Tech Univ;China United Heavy Duty Gas Turbine Technol Co Ltd;East China Univ Sci & Technol;Nanjing Tech Univ
来源:FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES  2024
关键词:continuum damage mechanics   creep-fatigue interaction   cyclic responses   hybrid stress- and strain-controlled creep-fatigue interaction loading   life prediction  
质疑
Impact of residual stress on high and very high cycle fatigue behaviours of Inconel 718 at room temperature and 650 °C被引量:9收藏 分享
作者:Wang, Yong-Jie Hu, Hua-Yan Yang, Yi-Fan Dong, Nai-Jian Nie, Xiang-Fan Wen, Jian-Feng Song, Miao Chen, Yong-Hui Tu, Shan-Tung
机构:East China Univ Sci & Technol;Shanghai Jiao Tong Univ;Air Force Engn Univ;Shanghai Inst Aircraft Mech & Control;Aircraft Strength Res Inst China
来源:INTERNATIONAL JOURNAL OF FATIGUE  2025
关键词:Inconel 718   Very high cycle fatigue   Residual stress   Life prediction  
质疑
Ductile failure of flat plates containing two through-wall cracks: Experimental investigation and numerical被引量:9收藏 分享
作者:Zhang, Xue-Wei Wen, Jian-Feng Wang, Tao Zhang, Xian-Cheng Tu, Shan-Tung
机构:East China Univ Sci & Technol
来源:INTERNATIONAL JOURNAL OF PRESSURE VESSELS AND PIPING  2021
关键词:Ductile failure   Ductility exhaustion   Crack interaction   Multiple cracks   Finite element analysis  
质疑
Effect of surface modification on the high temperature low cycle fatigue performance of LPBF 316L austenitic steel被引量:9收藏 分享
作者:Gu, Jiayuan Wang, Xiaowei Gao, Yuntao Chen, Yefeng Zhang, Zhen Wen, Jianfeng Gong, Jianming
机构:Nanjing Tech Univ;Nanjing Tech Univ;Ctr Excellence Adv Mat;Nanjing Inst Technol;East China Univ Sci & Technol
来源:ENGINEERING FRACTURE MECHANICS  2024
关键词:Low cycle fatigue   Laser powder bed fusion   316L stainless Steel   Surface treatment   Fatigue life estimation  
质疑
Creep behavior and fracture mechanism of an additively manufactured 316L stainless steel with extraordinary creep resistance被引量:8收藏 分享
作者:Pan, Yujie Hu, Huayan Wang, Kangkang Dong, Naijian Qiu, Rui Wen, Jian-Feng Song, Miao Tu, Shan -Tung
机构:East China Univ Sci & Technol;Shanghai Jiao Tong Univ;Shanghai Inst Aircraft Mech & Control
来源:MECHANICS OF MATERIALS  2024
关键词:Additive manufacturing   316L stainless steel   Creep behavior   Creep fracture   Creep resistance   Dislocation cell  
质疑
Assessment of prior fatigue damage and a new approach to predict remanent creep rupture of P92 steel被引量:8收藏 分享
作者:Zhang, Chunan Zhang, Tianyu Wang, Xiaowei Wen, Jianfeng Jiang, Yong Gong, Jianming Tu, Shantung
机构:Nanjing Tech Univ;Jiangsu Key Lab Design & Manufacture Extreme Press;East China Univ Sci & Technol
来源:INTERNATIONAL JOURNAL OF PRESSURE VESSELS AND PIPING  2023
关键词:Prior fatigue damage   Remanent creep life   Time-temperature parameter   Creep life prediction   P92 steel  
质疑
Revealing the influences of strain amplitudes on hybrid stress-strain controlled creep-fatigue interaction responses for 9 % Cr steel被引量:8收藏 分享
作者:Zhang, Tianyu Wang, Xiaowei Zhang, Chunan Jiang, Yong Wen, Jianfeng Zhang, Xiancheng Gong, Jianming
机构:Nanjing Tech Univ;Nanjing Tech Univ;East China Univ Sci & Technol
来源:ENGINEERING FRACTURE MECHANICS  2023
关键词:Creep-fatigue interaction   Strain amplitude effect   Microstructure differences   Dwell indicator  
质疑
A novel small specimen testing method based on a pneumatic bulging test: Measurement of tensile properties at high temperatures被引量:6收藏 分享
作者:Shi, Jin Guo, Zi-Jian Wang, Jia-Xing Liu, Xin Zhou, Yun Tang, Jian-Qun Wen, Jian-Feng Tu, Shan-Tung
机构:East China Univ Sci & Technol;China Special Equipment Inspect & Res Inst;Special Equipment Safety Supervis Inspect Inst Jia;Nanjing Tech Univ
来源:INTERNATIONAL JOURNAL OF PRESSURE VESSELS AND PIPING  2024
关键词:Pneumatic bulging test   Tensile properties   High temperature   Miniature specimen   Small punch test  
质疑
Cyclic response and residual life prediction of Inconel 718 superalloy after overloading under hybrid stress-strain controlled creep-fatigue loading被引量:6收藏 分享
作者:Kang, Zitong Wang, Xiaowei Wang, Zhiwei Zhou, Dewen Zhang, Tianyu Wen, Jianfeng Zhang, Chengcheng Tang, Jianqun Gong, Jianming
机构:Nanjing Tech Univ;Nanjing Tech Univ;East China Univ Sci & Technol;AECC Commercial Aircraft Engine Co Ltd
来源:ENGINEERING FAILURE ANALYSIS  2024
关键词:Creep-fatigue interaction   Overloading   Residual life prediction   Cyclic response   Fractographic observation  
质疑
Effect of lapped sequence on corrosion behavior and mechanism of pure titanium/galvanized steel joint using cold metal transfer joining technology被引量:4收藏 分享
作者:Chang, Jinghuan Wen, Jian-Feng Cao, Rui Yan, Yingjie Sui, Ran Tu, Shan-Tung
机构:East China Univ Sci & Technol;Lanzhou Inst Technol;Lanzhou Univ Technol
来源:INTERNATIONAL JOURNAL OF PRESSURE VESSELS AND PIPING  2024
关键词:Titanium   Steel   Cold metal transfer welding   Corrosion mechanism   Galvanic corrosion  
质疑
A P-S-N curve fitting method based on mixed Weibull distribution and expectation-maximization algorithm被引量:3收藏 分享
作者:Liu, Jianhui Liu, Xianyu Hua, Feilong Pan, Xuemei Feng, Ruicheng Wen, Jianfeng
机构:Lanzhou Univ Technol;East China Univ Sci & Technol
来源:INTERNATIONAL JOURNAL OF PRESSURE VESSELS AND PIPING  2024
关键词:Weibull distribution   Failure probabilities   Fatigue life prediction   P-S-N curve   Small sample  
质疑
Review on Optimization of Tensile, Fatigue, and Creep Properties of Additive Manufactured Nickel-Based Superalloys by Modifying the Microstructure and Residual Stress被引量:3收藏 分享
作者:Lei, Xinming Zhang, Shuyan Zhang, Lijuan Dong, Naijian Wen, Jianfeng Wu, Guiyi Sun, Xuan Yang, Fan Rao, Delin Zhang, Wei Cheng, Xu
机构:Beihang Univ;Ctr Excellence Adv Mat;Dongguan Univ Technol;East China Univ Sci & Technol
来源:FATIGUE & FRACTURE OF ENGINEERING MATERIALS & STRUCTURES  2026
关键词:additive manufacture   creep   fatigue   microstructure   nickel-base superalloy   residual stress   tensile strength  
质疑
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