首站-论文投稿智能助手
典型文献
High temperature induced"glaze"layer formed in HVOF-sprayed NiCrWMoCuCBFe coating and its wear reduction mechanism
文献摘要:
The in-situ formation of oxides on alloy surface induced by high temperature can effectively reduce wear and resist oxidation.In consideration of the solid solution strengthening effect and great oxidation resistance of additional elements at elevated temperature,the NiCrWMoCuCBFe coating was prepared by high velocity oxygen flame(HVOF)spraying technology,and its tribological behavior was scrutinized from 25 to 800℃.By means of high temperature Vickers hardness tester and high temperature X-ray diffractometer,the mechanical properties and microstructures of NiCrWMoCuCBFe coating were measured.And the effect of the mechanical properties and microstructures of the coating on tribological performance was discussed in detail.The results showed both its friction coefficient(0.37)and wear rate(5.067×10-6 mm3·N-1·m-1)at 800℃were the lowest,which was mainly related to the formation of"glaze"layer on the coating surface at high temperature.The glaze layer consisted of two parts,which were NiCr2O4 oxide film with the ability of interlaminar slip formed in the outer layer and nano-grains existed in the inner layer.Worth mentioning,these nano-grains provided bearing capability while the oxide film was vital to reduce wear rate and friction coefficient.As the ambient temperature increased,many hard oxides were produced on the wear scars,including NiO,Cr2O3,MoO3,and Mo2C.They can improve tribological and mechanical properties of NiCrWMoCuCBFe coating at a wide temperature range.
文献关键词:
作者姓名:
Yijing WANG;Xiaoqin ZHAO;Enkang HAO;Zhenyu BU;Yulong AN;Huidi ZHOU;Jianmin CHEN
作者机构:
State Key Laboratory of Solid Lubrication,Lanzhou Institute of Chemical Physics,Chinese Academy of Sciences,Lanzhou 730000,China;Center of Materials Science and Optoelectronics Engineering,University of Chinese Academy of Sciences,Beijing 100049,China
文献出处:
引用格式:
[1]Yijing WANG;Xiaoqin ZHAO;Enkang HAO;Zhenyu BU;Yulong AN;Huidi ZHOU;Jianmin CHEN-.High temperature induced"glaze"layer formed in HVOF-sprayed NiCrWMoCuCBFe coating and its wear reduction mechanism)[J].摩擦(英文),2022(09):1424-1438
A类:
NiCrWMoCuCBFe
B类:
High,temperature,induced,glaze,layer,formed,HVOF,sprayed,coating,its,wear,reduction,mechanism,situ,formation,oxides,alloy,surface,by,high,can,effectively,reduce,oxidation,In,consideration,solid,solution,strengthening,great,resistance,additional,elements,elevated,was,prepared,velocity,oxygen,flame,spraying,technology,tribological,behavior,scrutinized,from,By,means,Vickers,hardness,tester,diffractometer,mechanical,properties,microstructures,were,measured,And,performance,discussed,detail,results,showed,both,friction,coefficient,rate,mm3,lowest,which,mainly,related,consisted,two,parts,NiCr2O4,film,interlaminar,slip,outer,nano,grains,existed,inner,Worth,mentioning,these,provided,bearing,capability,while,vital,ambient,increased,many,produced,scars,including,NiO,Cr2O3,MoO3,Mo2C,They,improve,wide,range
AB值:
0.518548
相似文献
Minimum quantity lubrication machining of aeronautical materials using carbon group nanolubricant:From mechanisms to application
Xin CUI;Changhe LI;Wenfeng DING;Yun CHEN;Cong MAO;Xuefeng XU;Bo LIU;Dazhong WANG;Hao Nan LI;Yanbin ZHANG;Zafar SAID;Sujan DEBNATH;Muhammad JAMIL;Hafiz Muhammad ALI;Shubham SHARMA-School of Mechanical and Automotive Engineering,Qingdao University of Technology,Qingdao 266520,China;College of Mechanical and Electrical Engineering,Nanjing University of Aeronautics and Astronautics,Nanjing 210016,China;Chengdu Tool Research Institute Co.,Ltd.Chengdu 610500,China;College of Automotive and Mechanical Engineering,Changsha University of Science and Technology,Changsha 410114,China;Key Laboratory of Special Purpose Equipment and Advanced Processing Technology,Ministry of Education&Zhejiang Province,Zhejiang University of Technology,Hangzhou 310032,China;Sichuan Future Aerospace Industry LLC.,Shifang 618400,China;School of Mechanical and Automotive Engineering,Shanghai University of Engineering Science,Shanghai 201620,China;School of Aerospace,University of Nottingham Ningbo China,Ningbo 315100,China;College of Engineering,University of Sharjah,Sharjah 27272,United Arab Emirates;Mechanical Engineering Department,Curtin University,Miri 98009,Malaysia;Mechanical Engineering Department,King Fahd University of Petroleum and Minerals,Dhahran 31261,Saudi Arabia;Department of Mechanical Engineering and Advanced Materials Science,Council of Scientific and Industrial Research(CSIR)-Central Leather Research Institute(CLRI),Regional Center for Extension and Development,Jalandhar 144021,India
Impact of Si on the high-temperature oxidation of AlCr(Si)N coatings
Nikolaus J?ger;Michael Meindlhumer;Michal Zitek;Stefan Spor;Hynek Hruby;Farwah Nahif;Jaakko Julin;Martin Rosenthal;Jozef Keckes;Christian Mitterer;Rostislav Daniel-Christian Doppler Laboratory for Advanced Synthesis of Novel Multifunctional Coatings at the Department of Materials Science,Montanuniversit?t Leoben,Austria;voestalpine eifeler Vacotec GmbH,Diisseldorf,Germany;Institute of Ion Beam Physics and Materials Research,Helmholtz-Zentrum Dresden-Rossendorf,Dresden,Germany;Department of Physics,University of Jyvaskyla,Finland;European Synchrotron Radiation Facility,Grenoble,France;Erich Schmid Institute for Materials Science,Austrian Academy of Sciences,Austria;Department of Materials Science,Montanuniversit?t Leoben,Austria
Laser-induced topology optimized amorphous nanostructure and corrosion electrochemistry of supersonically deposited Ni30Cr25Al15Co15Mo5Ti5Y5 HEA coating based on AIMD
Xue Yan;Cheng Zhang;Yangshuai Li;Youjian Yi;Ziruo Cui;Bingyuan Han-State Key Laboratory of High Field Laser Physics,Shanghai Institute of Optics and Fine Mechanics,Chinese Academy of Sciences,Shanghai 201800,China;Hangzhou Institute for Advanced Study,University of Chinese Academy of Sciences(UCAS),Hangzhou 310024,China;National Laboratory on High Power Laser and Physics,Shanghai Institute of Optics and Fine Mechanics,Chinese Academy of Sciences,Shanghai 201800,China;Key Laboratory for Laser Plasmas(MOE),Collaborative Innovation Center of IFSA(C1C1FSA),School of Physics and Astronomy,Shanghai Jiao Tong University,Shanghai 200240,China;School of Automotive and Traffic Engineering,Jiangsu University of Technology,Changzhou 213001,China
Medium-entropy(Me,Ti)0.1(Zr,Hf,Ce)0.9O2(Me=Y and Ta):Promising thermal barrier materials for high-temperature thermal radiation shielding and CMAS blocking
Shuaihang Qiu;Huimin Xiang;Fu-Zhi Dai;Hailong Wang;Muzhang Huang;Chunlei Wan;Qing Meng;Jiangtao Li;Xiaohui Wang;Yanchun Zhou-Science and Technology on Advanced Functional Composite Laboratory,Aerospace Research Institute of Materials and Processing Technology,Beijing 100076,China;State Key Laboratory of Advanced Technology for Materials Synthesis and Processing,Wuhan University of Technology,Wuhan 430070,China;School of Materials Science and Engineering,Zhengzhou University,Zhengzhou 450001,China;State Key Lab of New Ceramics and Fine Processing,School of Materials Science and Engineering,Tsinghua University,Beijing 100084,China;Technical Institute of Physics and Chemistry,Chinese Academy of Sciences,Beijing 100190,China;Institute of Metal Research,Chinese Academy of Sciences,Shenyang 110016,China
机标中图分类号,由域田数据科技根据网络公开资料自动分析生成,仅供学习研究参考。