欢迎登录材料期刊网

材料期刊网

高级检索

通过某种工艺或多种工艺在零件表面获得一定的表面织构,是改善零件摩擦学性能的有效手段.综合国内外表面织构的研究,侧重分析了速度、载荷、润滑状态、滑动取向等服役条件对摩擦学性能的影响机制,并对未来表面织构的研究热点进行展望,对未来零件表面织构的设计与摩擦学性能的研究具有非常重要的参考价值.

参考文献

[1] 钱振华;左希庆.激光造型技术在摩擦副表面处理中的应用[J].表面技术,2008(1):86-88.
[2] B. He;W. Chen;Q. Jane Wang.Surface Texture Effect on Friction of a Microtextured Poly(dimethylsiloxane) (PDMS)[J].Tribology letters,20083(3):187-197.
[3] Waldemar Koszela;Lidia Galda;Andrzej Dzierwa;Pawel Pawlus.The effect of surface texturing on seizure resistance of a steel-bronze assembly[J].Tribology International,201010(10):1933-1942.
[4] Wieslaw Grabon;Waldemar Koszela;Pawel Pawlus;Slawomir Ochwat.Improving tribological behaviour of piston ring-cylinder liner frictional pair by liner surface texturing[J].Tribology International,2013:102-108.
[5] Auezhan Amanov;Ryo Tsuboi;Hironobu Oe;Shinya Sasaki.The influence of bulges produced by laser surface texturing on the sliding friction and wear behavior[J].Tribology International,2013:216-223.
[6] P. Andersson;J. Koskinen;S. Varjus;Y. Gerbig;H. Haefke;S. Georgiou;B. Zhmud;W. Buss.Microlubrication effect by laser-textured steel surfaces[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,20073/4(3/4):369-379.
[7] 厉淦;沈明学;孟祥铠;李纪云;李晓;彭旭东.316L不锈钢沟槽型表面微织构减摩特性实验研究?[J].功能材料,2015(2):2033-2037.
[8] Surya P. Mishra;Andreas A. Polycarpou.Tribological studies of unpolished laser surface textures under starved lubrication conditions for use in air-conditioning and refrigeration compressors[J].Tribology International,201112(12):1890-1901.
[9] Hiroki Yamakiri;Shinya Sasaki;Tsuneo Kurita;Nagayoshi Kasashima.Effects of laser surface texturing on friction behavior of silicon nitride under lubrication with water[J].Tribology International,20115(5):579-584.
[10] Andriy Kovalchenko;Oyelayo Ajayi;Ali Erdemir;George Fenske.Friction and wear behavior of laser textured surface under lubricated initial point contact[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,20119/10(9/10):1719-1725.
[11] Y. Qiu;M. M. Khonsari.Experimental investigation of tribological performance of laser textured stainless steel rings[J].Tribology International,20115(5):635-644.
[12] 彭旭东;杜东波;李纪云.不同型面微孔对激光加工多孔端面机械密封性能的影响[J].摩擦学学报,2006(4):367-371.
[13] 王晓雷;韩文非;加藤康司.碳化硅陶瓷的水润滑特性及其表面微细织构的优化设计[J].中国机械工程,2008(4):457-460.
[14] Xiaolei Wang;Wei Liu;Fei Zhou;Di Zhu.Preliminary investigation of the effect of dimple size on friction in line contacts[J].Tribology International,20097(7):1118-1123.
[15] 封贝贝;汪家道;陈大融.微米级沟槽表面薄膜的制备及减阻性能研究[J].功能材料,2012(9):1173-1176.
[16] Ashwin Ramesh;Wasim Akram;Surya P. Mishra;Andrew H. Cannon;Andreas A. Polycarpou;William P. King.Friction characteristics of microtextured surfaces under mixed and hydrodynamic lubrication[J].Tribology International,2013:170-176.
[17] Xing Youqiang;Deng Jianxin;Feng Xiuting;Yu Sheng.Effect of laser surface texturing on Si_3N_4/TiC ceramic sliding against steel under dry friction[J].Materials & design,2013Dec.(Dec.):234-245.
[18] Amanov, A.;Watabe, T.;Tsuboi, R.;Sasaki, S..Improvement in the tribological characteristics of Si-DLC coating by laser surface texturing under oil-lubricated point contacts at various temperatures[J].Surface & Coatings Technology,2013:549-560.
[19] Wei Tang;Yuankai Zhou;Hua Zhu;Haifeng Yang.The effect of surface texturing on reducing the friction and wear of steel under lubricated sliding contact[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,2013May 15(May 15):199-204.
[20] Wu Ze;Deng Jianxin;Zhang Hui;Lian Yunsong;Zhao Jun.Tribological behavior of textured cemented carbide filled with solid lubricants in dry sliding with titanium alloys[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,2012:135-143.
[21] Segu, D.Z.;Kim, J.-H.;Choi, S.G.;Jung, Y.-S.;Kim, S.-S..Application of Taguchi techniques to study friction and wear properties of MoS2 coatings deposited on laser textured surface[J].Surface & Coatings Technology,2013:504-514.
[22] Hu, T.;Hu, L.;Ding, Q..Effective solution for the tribological problems of Ti-6Al-4V: Combination of laser surface texturing and solid lubricant film[J].Surface & Coatings Technology,201224(24):5060-5066.
[23] 王震;李亮;戚宝运;卞荣.微织构对硬质合金表面摩擦性能的影响[J].工具技术,2011(1):13-16.
[24] 符永宏;施余峰;华希俊;孙东成;张宗涛.激光毛化表面的摩擦学性能实验研究[J].中国机械工程,2011(19):2269-2274.
[25] Andriy Kovalchenko;Oyelayo Ajayi;Ali Erdemir;George Fenske;Izhak Etsion.The effect of laser surface texturing on transitions in lubrication regimes during unidirectional sliding contact[J].Tribology International,20053(3):219-225.
[26] 马国亮;姜亮;黄巍;王晓雷.不同粗糙度条件下硅橡胶表面织构润滑特性的研究[J].西安交通大学学报,2010(9):87-92.
[27] Wei Huang;Liang Jiang;Chuanxi Zhou;Xiaolei Wang.The lubricant retaining effect of micro-dimples on the sliding surface of PDMS[J].Tribology International,2012:87-93.
[28] Wei Huang;Sijie Liao;Xiaolei Wang.Wettability and friction coefficient of micro-magnet arrayed surface[J].Applied Surface Science: A Journal Devoted to the Properties of Interfaces in Relation to the Synthesis and Behaviour of Materials,20127(7):3062-3067.
[29] Bom Sok Kim;Woo Yooung Chung;Meung-Ho Rhee.Studies on the Application of Laser Surface Texturing to Improve the Tribological Performance of AlCrSiN-Coated Surfaces[J].Metals and Materials International,20126(6):1023-1027.
[30] P.W. Shum;Z.F. Zhou;K.Y. Li.To increase the hydrophobicity and wear resistance of diamond-like carbon coatings by surface texturing using laser ablation process[J].Thin Solid Films: An International Journal on the Science and Technology of Thin and Thick Films,2013Oct.1(Oct.1):472-476.
[31] 邓宝清;任露泉;苏岩;张永平;刘志敏.模拟活塞缸套摩擦副的仿生非光滑表面的摩擦学研究[J].吉林大学学报(工学版),2004(1):79-84.
[32] Pradeep L. Menezes;Kishore;Satish V. Kailas.Influence of surface texture on coefficient of friction and transfer layer formation during sliding of pure magnesium pin on 080 M40 (EN8) steel plate[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,20065/6(5/6):578-591.
[33] Rapoport L;Moshkovich A;Perfilyev V;Lapsker I;Halperin G;Itovich Y;Etsion I.Friction and wear of MoS2 films on laser textured steel surfaces[J].Surface & Coatings Technology,200814(14):3332-3340.
[34] 胡志德;晏华;王雪梅;唐锐;张平;杨健健.固体润滑剂对磁流变液摩擦性能的影响[J].功能材料,2013(18):2645-2649.
[35] A. A. Voevodin;J. S. Zabinski.Laser surface texturing for adaptive solid lubrication[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,200611/12(11/12):1285-1292.
[36] Waldemar Koszela;Pawel Pawlus;Lidia Galda.The effect of oil pockets size and distribution on wear in lubricated sliding[J].Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear,20077/12(7/12):1585-1592.
[37] Jianliang Li;Dangsheng Xiong;Jihui Dai;Zhongjia Huang;Rajnesh Tyagi.Effect of surface laser texture on friction properties of nickel-based composite[J].Tribology International,20105/6(5/6):1193-1199.
[38] Md. Abdul Mannan;Masamitsu Nagano;Tetsuya Kida;Norie Hirao;Yuji Baba.Characterization of BCN films synthesized by radiofrequency plasma enhanced chemical vapor deposition[J].The journal of physics and chemistry of solids,20091(1):20-25.
[39] Ali Osman Kurban;Sahin Yildirim.Analysis of a hydrodynamic thrust bearing with elastic deformation using a recurrent neural network[J].Tribology International,200312(12):943-948.
[40] Sihuan Yuan;Wei Huang;Xiaolei Wang.Orientation effects of micro-grooves on sliding surfaces[J].Tribology International,20119(9):1047-1054.
[41] H. L. Costa;I. M. Hutchings.Effects of die surface patterning on lubrication in strip drawing[J].Journal of Materials Processing Technology,20093(3):1175-1180.
[42] Ulrika Pettersson;Staffan Jacobson.Influence of surface texture on boundary lubricated sliding contacts[J].Tribology International,200311(11):857-864.
[43] H. L. Costa;I. M. Hutchings.Hydrodynamic lubrication of textured steel surfaces under reciprocating sliding conditions[J].Tribology International,20078(8):1227-1238.
上一张 下一张
上一张 下一张
计量
  • 下载量()
  • 访问量()
文章评分
  • 您的评分:
  • 1
    0%
  • 2
    0%
  • 3
    0%
  • 4
    0%
  • 5
    0%