|
|
Wear Resistance of a Texture-like Nickel-based Composite Coating |
Yufu ZHANG1,2,Guirong YANG1,**( ),Chaopeng HUANG1,Wenming SONG1,2,Jian LI3,Jinjun LV4,Yuan HAO1 |
1. State Key Laboratory of Advanced Processing and Recycling of Nonferrous Metals, Lanzhou University of Technology, Lanzhou 730050, China 2. Lanzhou Petroleum Machinery Institute, Lanzhou 730070, China 3. Wuhan Research Institute of Materials Protection, Wuhan 430030, China 4. College of Chemistry and Materials Science, Northwest University, Xi’an 710069, China |
|
Cite this article:
Yufu ZHANG,Guirong YANG,Chaopeng HUANG,Wenming SONG,Jian LI,Jinjun LV,Yuan HAO. Wear Resistance of a Texture-like Nickel-based Composite Coating. Chinese Journal of Materials Research, 2015, 29(9): 679-685.
|
Abstract A nickel-based (Ni0) composite coating, which was reinforced with 20%WC and 6% graphite particles and has a texture-like section morphology, was fabricated on steel substrate by vacuum cladding technology. Then its microstructure and tribological property under dry friction condition were characterized in comparison with other three coatings (Ni0, Ni0+20%WC and Ni0+6% graphite). The results show that the WC particles evenly distributed in the nickel-based (Ni0) alloy coatings and formed a special 3D reticular microstructure. The Ni-based alloy coating is mainly composed of γ-Ni solid solution, hard phases (Cr7C3, Cr23C6, CrB) and eutectic phases (Ni3Si, Ni3B). The cladd composite coating consisted of Ni0 with WC and graphite particles exhibits the highest wear resistance among the test coatings. The combination of texture-like structure (which was composed of WC particles and nickel base alloy) and graphite lubricant promoted the abrasion resistance of the composite coating by about 9.6 times in comparison to the pure Ni0 coating.
|
Received: 05 March 2015
|
Fund: *Supported by National Natural Science Foundation of China No. 51205178 and the Natural Science Foundation of Gansu Province No. 1208RJZA189. |
1 | Przyby?owicz J,Kusiński J, Structure of laser cladded tungsten carbide composite coatings, Journal of Materials Processing Technology, 109(1), 154(2001) | 2 | Badisch E,Kirchga?ner M, Influence of welding parameters on microstructure and wear behaviour of a typical NiCrBSi hardfacing alloy reinforced with tungsten carbide, Surface and Coatings Technology, 202(24), 6016(2008) | 3 | Sari N Y,Yilmaz M, Improvement of wear resistance of wire drawing rolls with Cr-Ni-B-Si+WC thermal spraying powders, Surface and Coatings Technology, 202(13), 3136(2008) | 4 | Murthy J K N,Venkataraman B, Abrasive wear behaviour of WC–CoCr and Cr3C2-20(NiCr) deposited by HVOF and detonation spray processes, Surface and Coatings Technology, 200(8), 2642(2006) | 5 | Tobar M J,Alvarez C, Amado J M, Morphology and characterization of laser clad composite NiCrBSi-WC coatings on stainless steel, Surface and coatings Technology, 200(22), 6313(2006) | 6 | ZHU Dingyi,GUAN Xiangfeng, DUI Weizhen, Preparation and structure properties of the nickel-graphite high temperature self-lubricating materials, The Chinese Journal of Nonferrous Metals, 14(5), 707(2004) | 6 | (朱定一, 关翔锋, 兑卫真, 镍-石墨高温自润滑材料的熔炼制备及其组织性能, 中国有色金属学报, 14(5), 707(2004)) | 7 | WANG Qingnian,SUI Zhongxiang, Development of some foreign metal-matrix self-lubricating composites, Tribology, 17(1), 89(1997) | 7 | (王庆年, 隋忠祥, 国外某些金属基自润滑复合材料的开发与进展, 摩擦学学报, 17(1), 89(1997)) | 8 | Liu X B,Liu H Q, Liu Y F, Effects of temperature and normal load on tribological behavior of nickel-based high temperature self-lubricating wear-resistant composite coating, Composites Part B: Engineering, 53, 347(2013) | 9 | ZHAO Wenjie,WANG Liping, XUE Qunji, Development and research progress of surface texturing on improving tribological performance of surface, Tribology, 31(6), 622(2011) | 9 | (赵文杰, 王立平, 薛群基, 织构化提高表面摩擦学性能的研究进展, 摩擦学学报, 31(6), 622(2011) | 10 | HU Tianchang,HU Litian, DING Qi, Tribological properties of laser textured surfaces of 45# steel under dry friction, Tribology, 30(1), 46(2010) | 10 | (胡天昌, 胡丽天, 丁 奇, 45#钢表面激光织构化及其干摩擦特性研究, 摩擦学学报, 30(1), 46(2010)) | 11 | HU Tianchang,HU Litian, ZHANG Yongsheng, Preparation of composite lubrication structure and its tribological properties on 45# Steel Surface, Tribology, 32(1), 14(2012) | 11 | (胡天昌, 胡丽天, 张永胜, 45#钢表面复合润滑结构的制备及其摩擦性能研究, 摩擦学学报, 32(1), 14(2012)) | 12 | Liyanage T,Fisher G, Gerlich A P, Influence of alloy chemistry on microstructure and properties in NiCrBSi overlay coatings deposited by plasma transferred arc welding (PTAW), Surface and Coatings Technology, 205(3), 759(2010) | 13 | LU Qi,LI Jinguo, JIN Tao, ZHOU Yizhou, SUN Xiaofeng, HU Zhuangqi, Competitive growth in bi-crystal of Ni-based superalloys during directional solidification, Acta Metallurgica Sinica, 46(6), 641(2011) | 13 | (卢 崎, 李金国, 金 涛, 周亦胄, 孙晓峰, 胡壮麒, 镍基双晶高温合金定向凝固过程中的竞争生长, 金属学报, 46(6), 641(2011)) | 14 | Song W M,Yang G R, Hao Y, Lu J J, Microstructure and wear behaviour of Ni-based surface coating on copper substrate, Wear, 262(7), 868(2007) | 15 | J. Rodriguez, A. Martin, R. Fernández, J.E. Fernández,An experimental study of the wear performance of NiCrBSi thermal spray coatings, Wear, 255(7), 950(2003) | 16 | Wang H,Xia W M, Jin Y S, A study on abrasive resistance of Ni-based coating with a WC hard phase, Wear, 195(1), 47(1996) | 17 | YANG Guirong,ZHAO Hu, SONG Wenming, LI Jian, MA Ying, Wear behaviour of Ni-based composite coating with directional solidification structure, Chinese Journal of Materials Research, 27(3), 279(2013) | 17 | (杨贵荣, 赵 虎, 宋文明, 李健, 马颖, 定向凝固镍基复合涂层的摩擦磨损性能, 材料研究学报, 27(3), 279(2013)) |
|
No Suggested Reading articles found! |
|
|
Viewed |
|
|
|
Full text
|
|
|
|
|
Abstract
|
|
|
|
|
Cited |
|
|
|
|
|
Shared |
|
|
|
|
|
Discussed |
|
|
|
|