Research on cavitation erosion and wear resistance performance of coatings

被引:47
作者
Qiu, Ning [1 ]
Wang, Leqin [1 ]
Wu, Suhuan [2 ]
Likhachev, Dmitriy S. [1 ]
机构
[1] Zhejiang Univ, Inst Proc Equipment, Hangzhou 310027, Peoples R China
[2] Shanghai BondPoly Engn Mat & Technol Co Ltd, Shanghai 201601, Peoples R China
关键词
Cavitation erosion; Wear resistance; Coatings; Micro structure; Abrasive jet; HARDNESS;
D O I
10.1016/j.engfailanal.2015.06.003
中图分类号
TH [机械、仪表工业];
学科分类号
0802 ;
摘要
Depending on the nature of the working medium and working conditions, corrosive and cavitation damage shall arise to pump's components. In industrial applications the corrosion-reducing coatings are sprayed on hydraulic components. But it is questionable whether such products actually do help under wear or cavitation loads or not. Abrasive jet wear tests were carried out to determine the wear resistance of coating materials: polymers and ceramics, cast iron, and steel of various types. The samples were loaded for five hours, and finally the wear depth was measured as a determining indicator of the sample's wear resistance. Results of investigation on anti-erosion performance of epoxy resin, ceramic and Polyurethane (PU) coatings brushed on alloy steel surface were also presented. Cavitation erosion tests were performed on the ultrasonic rig. The mass loss and surface morphology of the specimens were examined by balance analysis and 3-D laser microscopy, respectively. The investigations showed excellent wear-resisting performance of ceramic coatings, which is better than wear-resistance of stainless steel, cast iron and high chrome alloy steel. But the excellent wear-resisting performance could not guarantee a good erosion-resisting performance. The ceramic coatings' anti-erosion performances were inferior to that of gray cast iron, and hardly comparable to those of stainless steels. The basic factors that influenced coating's cavitation erosion endurance were adhesion and thickness of coatings. Analysis of coating's degradation mechanism showed that PU coatings could withstand longer incubation period thus enhancing the materials' cavitation erosion resistance. Several practical cases were analyzed, showing some guidance for coatings' application. (C) 2015 Elsevier Ltd. All rights reserved.
引用
收藏
页码:208 / 223
页数:16
相关论文
共 16 条
[1]  
ASTM Designation, 2010, G3210 ASTM DES
[2]   Cavitation erosion resistance of diamond-like carbon coating on stainless steel [J].
Cheng, Feng ;
Jiang, Shuyun .
APPLIED SURFACE SCIENCE, 2014, 292 :16-26
[3]   Laser surfacing of S31603 stainless steel with engineering ceramics for cavitation erosion resistance [J].
Cheng, FT ;
Kwok, CT ;
Man, HC .
SURFACE & COATINGS TECHNOLOGY, 2001, 139 (01) :14-24
[4]   Hydro turbine failure mechanisms: An overview [J].
Dorji, Ugyen ;
Ghomashchi, Reza .
ENGINEERING FAILURE ANALYSIS, 2014, 44 :136-147
[5]  
Franc J.-P., 2004, FUNDAMENTALS CAVITAT
[6]   Cavitation erosion of silver plated coatings considering thermodynamic effect [J].
Hattori, Shuji ;
Taruya, Keisuke ;
Kikuta, Kengo ;
Tomaru, Hiroshi .
WEAR, 2013, 300 (1-2) :136-142
[7]   Cavitation erosion resistance of plastics [J].
Hattori, Shuji ;
Itoh, Takamoto .
WEAR, 2011, 271 (7-8) :1103-1108
[8]   Revision of cavitation erosion database and analysis of stainless steel data [J].
Hattori, Shuji ;
Ishikura, Ryohei .
WEAR, 2010, 268 (1-2) :109-116
[9]   Influence of the substrate hardness on the cavitation erosion resistance of TiN coating [J].
Krella, Alicja ;
Czyzniewski, Andrzej .
WEAR, 2007, 263 :395-401
[10]   Cavitation erosion resistance of Cr-N coating deposited on stainless steel [J].
Krella, Alicja ;
Czyzniewski, Andrzej .
WEAR, 2006, 260 (11-12) :1324-1332