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期刊文章列表

  • Min LIU,Liran MA(State Key Laboratory of Tribology,Tsinghua University).Drag reduction methods at solid-liquid interfaces[J].Friction,2022,第4期
  • Zongzheng WANG1,Wei PU1,Xin PEI1,Wei CAO2(School of Aeronautics and Astronautics,Sichuan University;School of Construction Machinery,Chang'an University).Contact stiffness and damping of spiral bevel gears under transient mixed lubrication conditions[J].Friction,2022,第4期
  • Xiaobin HU1,Jian SONG2,Zhenhua LIAO3,Yuhong LIU4,Jian GAO5,Bjoern MENZE1,Weiqiang LIU3,4(Department of Computer Science,Technical University of Munich;School of Biomedical Engineering,Sun Yat-sen University;Key Laboratory of Biomedical Materials and Implant Devices,Research Institute of Tsinghua University in Shenzhen;State Key Laboratory of Tribology,Tsinghua University;Mckelvey School of Engineering,Washington University in Saint Louis).Morphological residual convolutional neural network(M-RCNN) for intelligent recognition of wear particles from artificial joints[J].Friction,2022,第4期
  • Deliang ZHANG1,Yuge ZHANG1,Qiang LI1,Mingdong DONG2(Key Laboratory of Colloid and Interface Chemistry of the Ministry of Education,School of Chemistry and Chemical Engineering,Shandong University;Interdisciplinary Nanoscience Center (iNANO),Aarhus University).Origin of friction hysteresis on monolayer graphene[J].Friction,2022,第4期
  • Vigneashwara PANDIYAN1,Josef PROST2,Georg VORLAUFER2,Markus VARGA2,Kilian WASMER1(Laboratory for Advanced Materials Processing (LAMP),Swiss Federal Laboratories for Materials Science and Technology (Empa);AC2T research GmbH).Identification of abnormal tribological regimes using a microphone and semi-supervised machine-learning algorithm[J].Friction,2022,第4期
  • Qianzhi WANG1,Xuxin JIN2,Fei ZHOU1,2,3(National Key Laboratory of Science and Technology on Helicopter Transmission,Nanjing University of Aeronautics and Astronautics;College of Mechanical and Electrical Engineering,Nanjing University of Aeronautics and Astronautics;State Key Laboratory of Mechanics and Control of Mechanical Structures,Nanjing University of Aeronautics and Astronautics).Comparison of mechanical and tribological properties of CrBN coatings modified by Ni or Cu incorporation[J].Friction,2022,第4期
  • Jingdong SONG1,2,Lubing SHI1,Haohao DING1,Radovan GALAS3,Milan OMASTA3,Wenjian WANG1,Jun GUO1,Qiyue LIU1,Martin HARTL3(Tribology Research Institute,State Key Laboratory of Traction Power,Southwest Jiaotong University;School of Mechanical Engineering,Xi'an Jiaotong University;Faculty of Mechanical Engineering,Brno University of Technology).Effects of solid friction modifier on friction and rolling contact fatigue damage of wheel-rail surfaces[J].Friction,2022,第4期
  • S.J.EDER1,2,P.G.GRüTZMACHER2,T.SPENGER3,H.HECKES4,H.ROJACZ1,A.NEVOSAD1,F.HAAS3(AC2T research GmbH;Institute of Engineering Design and Product Development,TU Wien;Institute of Production Engineering,Graz University of Technology;Tyrolit–Schleifmittelwerke Swarovski K.G.).Experimentally validated atomistic simulation of the effect of relevant grinding parameters on work piece topography, internal stresses, and microstructure[J].Friction,2022,第4期
  • Yonghun YU,Junho SUH(Department of Mechanical Engineering,Pusan National University).Numerical analysis of three-dimensional thermo-elastic rolling contact under steady-state conditions[J].Friction,2022,第4期
  • Longxiang YANG1,Zhanjiang WANG2,Weiji LIU3,Guocheng ZHANG4,Bei PENG4,5(School of Automotive Engineering,Geely University of China;Department of Mechanical Engineering,Southwest Jiaotong University;School of Mechatronic Engineering,Southwest Petroleum University;School of Mechanical and Electrical Engineering,University of Electronic Science and Technology of China;Center for Robotics,University of Electronic Science and Technology of China).Interior-stress fields produced by a general axisymmetric punch[J].Friction,2022,第4期
  • Hao GONG,Xiaoyu DING,Jianhua LIU,Huihua FENG(School of Mechanical Engineering,Beijing Institute of Technology).Review of research on loosening of threaded fasteners[J].Friction,2022,第3期
  • Qingjuan WANG1,Tingli HOU1,Wei WANG1,Guoliang ZHANG2,Yuan GAO1,Kuaishe WANG1(School of Metallurgy Engineering,Xi'an University of Architecture and Technology;School of Mechanical Engineering,Tianjin University of Technology and Education).Tribological behavior of black phosphorus nanosheets as water-based lubrication additives[J].Friction,2022,第3期
  • Hao CHENG1,2,Wenjie ZHAO1(Key Laboratory of Marine Materials and Related Technologies,Zhejiang Key Laboratory of Marine Materials and Protective Technologies,Ningbo Institute of Materials Technology and Engineering,Chinese Academy of Sciences;University of Chinese Academy of Sciences).Regulating the Nb2C nanosheets with different degrees of oxidation in water lubricated sliding toward an excellent tribological performance[J].Friction,2022,第3期
  • Liangfei WU1,2,Zhaozhu ZHANG1,2,Mingming YANG1,Junya YUAN1,Peilong LI1,2,Zujun CHEN1,Xuehu MEN3(State Key Laboratory of Solid Lubrication,Lanzhou Institute of Chemical Physics,Chinese Academy of Sciences;Center of Materials Science and Optoelectronics Engineering,University of Chinese Academy of Sciences;School of Physical Science and Technology,Lanzhou University).Surface modification of YS-20 with polydopamine for improving the tribological properties of polyimide composites[J].Friction,2022,第3期
  • Shaogang CUI1,Yangzhen LIU1,Tong WANG2,Kiet TIEU2,Long WANG2,Dahai ZENG1,Zhou LI2,Wei LI1(Institute of Advanced Wear & Corrosion Resistant and Functional Materials,Jinan University;School of Mechanical,Materials,Mechatronic and Biomedical Engineering,University of Wollongong).Tribological behavior comparisons of high chromium stainless and mild steels against high-speed steel and ceramics at high temperatures[J].Friction,2022,第3期
  • Xiao YANG1,Yiran HU1,Lemeng ZHANG1,Yang ZHENG1,Denis J.POLITIS2,Xiaochuan LIU3,Li-liang WANG1(Department of Mechanical Engineering,Imperial College London;Department of Mechanical and Manufacturing Engineering,University of Cyprus;School of Mechanical Engineering,Xi'an Jiaotong University).Experimental and modelling study of interaction between friction and galling under contact load change conditions[J].Friction,2022,第3期
  • Meigui YIN1,2,Thibaut CHAISE2,Liwen WANG3,Daniel NéLIAS2,Minhao ZHU1,Zhenbing CAI1(Tribology Research Institute,Key Lab of Advanced Technologies of Materials,Southwest Jiaotong University;Univ Lyon,INSA Lyon,CNRS,LaMCoS;Research Institute of Dongfang Electric Corporation).Impact-sliding wear response of 2.25Cr1Mo steel tubes:Experimental and semi-analytical method[J].Friction,2022,第3期
  • Wenrui LIU1,2,Rok SIMI?2,Yuhong LIU1,Nicholas D.SPENCER2(State Key Laboratory of Tribology,Tsinghua University;Laboratory for Surface Science and Technology,Department of Materials,ETH Zurich).Effect of contact geometry on the friction of acrylamide hydrogels with different surface structures[J].Friction,2022,第3期
  • Xiang LIU1,Jintao WANG1,Lu HUANG1,Jingyue ZHANG1,Changhong XU1,Lin TONG1,Dan GUO2(National Institute of Metrology;State Key Laboratory of Tribology,Tsinghua University).Direct observation of the impact of water droplets on oilreplenishment in EHD lubricated contacts[J].Friction,2022,第3期
  • Albert ALBERS,Thomas KLOTZ,Chris FINK,Sascha OTT(IPEK–Institute of Product Engineering,Karlsruhe Institute of Technology).Investigation of the heat distribution in dry friction systems during fade and recovery using fiber-optic sensing and infrared technology[J].Friction,2022,第3期
  • Shuai WU1,2,Yuqing HE3,4,Quanshui ZHENG1,2,3,Ming MA2,3,4(Department of Engineering Mechanics,Tsinghua University;Center for Nano and Micro Mechanics,Tsinghua University;State Key Laboratory of Tribology,Tsinghua University;Department of Mechanical Engineering,Tsinghua University).Oscillating friction of nanoscale capillary bridge[J].Friction,2022,第2期
  • Shengcong WU,Zhisen MENG,Xiaoma TAO,Zhao WANG(Guangxi Key Laboratory for Relativistic Astrophysics,Department of Physics,Guangxi University).Superlubricity of molybdenum disulfide subjected to large compressive strains[J].Friction,2022,第2期
  • Yuqin WEN1,Jinyuan TANG1,Wei ZHOU2,Lin LI1,Caichao ZHU3(State Key Laboratory of High Performance Complex Manufacturing,Central South University;Hunan Provincial Key Laboratory of High Efficiency and Precision Machining of Difficult-to-Cut Material,Hunan University of Science and Technology;State Key Laboratory of Mechanical Transmission,Chongqing University).New analytical model of elastic-plastic contact for three-dimensional rough surfaces considering interaction of asperities[J].Friction,2022,第2期
  • Kuan ZHANG1,2,Jielai YANG3,4,Yulong SUN1,Yi WANG1,Jing LIANG4,Jing LUO5,Wenguo CUI4,Lianfu DENG4,Xiangyang XU3,Bo WANG2,Hongyu ZHANG1(State Key Laboratory of Tribology,Department of Mechanical Engineering,Tsinghua University;School of Chemical and Biological Engineering,Shandong University of Science and Technology;Department of Orthopedics,Ruijin Hospital,Shanghai Jiao Tong University School of Medicine;Shanghai Key Laboratory for Prevention and Treatment of Bone and Joint Diseases,Shanghai Institute of Traumatology and Orthopaedics,Ruijin Hospital,Shanghai Jiao Tong University School of Medicine;Beijing Research Institute of Automation for Machinery Industry Co.,Ltd.).Gelatin-based composite hydrogels with biomimetic lubrication and sustained drug release[J].Friction,2022,第2期
  • Wei CAO1,2,Tao HE3,Wei PU4,Ke XIAO5(School of Construction Machinery,Chang'an University;Shantui Construction Machinery Co.,Ltd.;Department of Mechanical Engineering,Northwestern University;School of Aeronautics and Astronautics,Sichuan University;College of Mechanical Engineering,Chongqing University).Dynamics of lubricated spiral bevel gears under different contact paths[J].Friction,2022,第2期
  • Hyeonho CHO1,Joonho LEE2,3,Hyundo HWANG4,Woonbong HWANG4,Jin-Gyun KIM2,Sunghan KIM1(School of Mechanical Engineering,Chung-Ang University;Department of Mechanical Engineering (Integrated Engineering),Kyung Hee University;Department of Robotics & Mechatronics,Korea Institute of Machinery & Materials;Department of Mechanical Engineering,POSTECH).Mechanical properties of graphene oxide-silk fibroin bionanofilms via nanoindentation experiments and finite element analysis[J].Friction,2022,第2期
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