277
Views
34
CrossRef citations to date
0
Altmetric
Original Articles

Experimental Study on the Tribological Properties of Powder Lubrication under Plane Contact

, , &
Pages 274-279 | Received 28 Jan 2009, Accepted 20 Sep 2009, Published online: 15 Mar 2010

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (7)

Wenzheng Zhai, Xiaoliang Shi, Siyuan Song, Jie Yao, Ahmed Mohamed Mahmoud Ibrahim, Zengshi Xu, Abid Qamar Ud Din, Long Chen, Qingshuai Zhu, Yecheng Xiao & Qiaoxin Zhang. (2015) Tribological Performance of Ni3Al Self-Lubricating Composites with Different Content of TiC at Elevated Temperature. Tribology Transactions 58:2, pages 365-373.
Read now
Wei Wang, Wei Gu & Kun Liu. (2015) Force Chain Evolution and Force Characteristics of Shearing Granular Media in Taylor-Couette Geometry by DEM. Tribology Transactions 58:2, pages 197-206.
Read now
Fanjing Meng, Kun Liu & Wei Wang. (2015) The Force Chains and Dynamic States of Granular Flow Lubrication. Tribology Transactions 58:1, pages 70-78.
Read now
Xiaoliang Shi, Wenzheng Zhai, Mang Wang, Zengshi Xu, Jie Yao, Siyuan Song & Qiaoxin Zhang. (2014) Tribological Behaviors of NiAl-Ti3SiC2 Self-Lubricating Composites at Elevated Temperatures. Tribology Transactions 57:4, pages 589-602.
Read now
Wenzheng Zhai, Xiaoliang Shi, Mang Wang, Zengshi Xu, Jie Yao, Siyuan Song & Qiaoxin Zhang. (2014) Friction and Wear Properties of TiAl-Ti3SiC2-MoS2 Composites Prepared by Spark Plasma Sintering. Tribology Transactions 57:3, pages 416-424.
Read now
Wei Wang, Wei Gu, Kun Liu, Fei Wang & Zhanqi Tang. (2014) DEM Simulation on the Startup Dynamic Process of a Plain Journal Bearing Lubricated by Granular Media. Tribology Transactions 57:2, pages 198-205.
Read now
Kenji Matsumoto, Hideo Watanabe & Naoaki Yoshida. (2013) A TEM Investigation of Crack Formation Mechanism on Chrome–Molybdenum Steel Tested under Real Driving Conditions. Tribology Transactions 56:6, pages 897-907.
Read now

Articles from other publishers (27)

Faisal Rahmani, R. K. Pandey & J. K. Dutt. (2023) Experimental Investigations on the Effect of Surface Pocket in a Powder-Lubricated Journal Bearing on Friction and Vibration. Journal of Testing and Evaluation 51:2, pages 20220151.
Crossref
Cong Liu, Yanguo Yin, Baohong Tong & Guotao Zhang. (2021) Tribological properties of MoS2 powder-lubricated interface. Industrial Lubrication and Tribology 73:6, pages 839-845.
Crossref
Jin Xiang & Zheng Yan. (2020) Experimental study on tribological characteristics in coke powder lubrication. Advances in Mechanical Engineering 12:8, pages 168781402094045.
Crossref
Xiaoyu Yan, Wei Wang, Xiaojun Liu, Jimin Xu, Lihong Zhu & Bingxun Yang. (2020) Using FEM to study the frictional instability induced by third-body particles confined in frictional interface. Industrial Lubrication and Tribology 72:10, pages 1239-1244.
Crossref
Fei Li, Kang Yang, Hongru Ma, Weibing Zhao, Xiaoxue Li & Haibo Lin. (2020) Analysis of In Situ Synthesis and Cross-Sectional Evolution of Wear Scars of TiAl-Ag Composites. Journal of Materials Engineering and Performance 29:4, pages 2514-2523.
Crossref
Z.L. Ni, J.J. Yang, Z.T. Gao, Y.X. Hao, L.F. Chen & F.X. Ye. (2020) Joint formation in ultrasonic spot welding of aluminum to copper and the effect of particle interlayer. Journal of Manufacturing Processes 50, pages 57-67.
Crossref
Jianing Zhu, Qunfeng Zeng, Chao Yan & Wanjun He. (2019) WS 2 Nanopowders as High-Temperature Lubricants: An Experimental and Theoretical Study . ACS Applied Nano Materials 2:9, pages 5604-5613.
Crossref
Z.L. Ni, X.X. Wang, S. Li & F.X. Ye. (2019) Mechanical strength enhancement of ultrasonic metal welded Cu/Cu joint by Cu nanoparticles interlayer. Journal of Manufacturing Processes 38, pages 88-92.
Crossref
Zeng-Lei Ni & Fu-Xing Ye. (2019) Microstructure and Mechanical Properties of an Ultrasonic Spot-Welded Aluminum-to-Aluminum Joint: Response to Interlayer Thickness. Materials 12:3, pages 369.
Crossref
Fanjing Meng & Kun Liu. (2019) The stick-slip mechanism for granular flow lubrication. Industrial Lubrication and Tribology 71:1, pages 139-145.
Crossref
Tian-Xun Xiu, Wei Wang, Kun Liu, Zhi-Yong Wang & Dao-Zhu Wei. (2018) Characteristics of force chains in frictional interface during abrasive flow machining based on discrete element method. Advances in Manufacturing 6:4, pages 355-375.
Crossref
Kang Yang, Hongru Ma, Xiyao Liu & Yangming Zhang. (2018) Effect of the micro-structure evolution of friction layer on the sliding tribology behavior of TiAl-10 Wt.% Ag at 16 N-0.5 m/s. Industrial Lubrication and Tribology 70:9, pages 1676-1683.
Crossref
Yunlong Jiao, Jiawei Ji, Kun Liu & Wei Wang. (2018) Effect of microtexturing on powder boundary layer: An experimental study based on laser microscopy and profilometry measurements. Lubrication Science 30:7, pages 355-363.
Crossref
Fanjing Meng, Kun Liu & Tao Qin. (2018) Experimental investigations of force transmission characteristics in granular flow lubrication. Industrial Lubrication and Tribology 70:7, pages 1151-1157.
Crossref
Liu Yang, Deguo Wang & Yanbao Guo. (2018) Frictional behaviors of iron based tools-casing with sand deposition. Tribology International 123, pages 180-190.
Crossref
Zhiqiang Wang, Shaofeng Wu & Jing Ni. (2018) Influence of SiO 2 /MoS 2 /graphite content on the wear properties of PTFE composites under natural seawater lubrication . Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 232:5, pages 607-618.
Crossref
Chao Wang, Wei Wang, Yong Liu & Kun Liu. (2018) Micro morphological observation and mechanism analysis of boundary layer evolution in mixed powder lubrication. Lubrication Science 30:3, pages 91-101.
Crossref
Sachin Singh, Mukti Tyagi, Geetha Seshadri, Ajay Kumar Tyagi & Lalit Varshney. (2017) Effect of gamma radiation on graphite – PTFE dry lubrication system. Radiation Physics and Chemistry 141, pages 213-219.
Crossref
Jingjing Chang, Wei Wang, Ming Zhao & Kun Liu. (2017) Experimental study and simulation analysis on friction behavior of a mechanical surface sliding on hard particles. Proceedings of the Institution of Mechanical Engineers, Part J: Journal of Engineering Tribology 231:10, pages 1371-1379.
Crossref
Pablo Gonzalez Rodriguez, Roy Lubbers, Sjoerd A. Veldhuis, Olga Narygina, Walter Lette, Dik J. Schipper & Johan E. ten Elshof. (2017) Tuning the Structure and Ionic Interactions in a Thermochemically Stable Hybrid Layered Titanate‐Based Nanocomposite for High Temperature Solid Lubrication. Advanced Materials Interfaces 4:14, pages 1700047.
Crossref
Wei Wang, Yong Liu, Guiqing Zhu & Kun Liu. (2014) Using FEM–DEM coupling method to study three-body friction behavior. Wear 318:1-2, pages 114-123.
Crossref
Cenk Misirli. (2014) On materials flow using different lubricants in upsetting process. Industrial Lubrication and Tribology 66:5, pages 623-631.
Crossref
Wei Wang, Xiaojun Liu & Kun Liu. (2013) Surface observations of a powder layer during the damage process under particulate lubrication. Wear 297:1-2, pages 841-848.
Crossref
Wei Wang, Xiaojun Liu & Kun Liu. (2012) Experimental Research on Force Transmission of Dense Granular Assembly Under Shearing in Taylor–Couette Geometry. Tribology Letters 48:2, pages 229-236.
Crossref
Wei Wang, Xiao Jun Liu, Kun Liu & Qi Yu Xiong. (2012) DEM Simulation on Tribological Behaviour of Third-Body Interface with Different Shear Elastic Modulus. Advanced Materials Research 482-484, pages 1951-1954.
Crossref
Wei Wang, Xiao Jun Liu, Kun Liu & Jin Long Shen. (2012) Influences of Particle’s Friction Coefficient on Tribological Behaviour of Third-Body Interface. Advanced Materials Research 479-481, pages 1074-1077.
Crossref
Wei Wang, Xiaojun Liu, Ting Xie & Kun Liu. (2011) Effects of Sliding Velocity and Normal Load on Tribological Characteristics in Powder Lubrication. Tribology Letters 43:2, pages 213-219.
Crossref

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.