TY - JOUR
T1 - Two feasible approaches to enhance the wear behaviors of NiCrBSi coating in atmosphere and aqueous environments
AU - Ye, Yuwei
AU - Wang, Chunting
AU - Zheng, Wenru
AU - Xiong, Wei
AU - Wang, Yongxin
AU - Li, Xiaogang
N1 - Publisher Copyright:
© 2017 IOP Publishing Ltd.
PY - 2017/9
Y1 - 2017/9
N2 - NiCrBSi coating was deposited successfully on the surface of 316 stainless steel substrate by means of plasma spraying. The microstructures and mechanical property were analyzed by scanning electron microscopy, x-ray diffraction, and a Vickers hardness tester. The wear performances of the coatings sliding against the GCr15 ball under ambient air and water conditions were investigated, and two feasible approaches (tungsten carbide (WC)-doping and heat treatment) were used to improve the tribological performance. Results showed that the hardness of the NiCrBSi coating increased by 12.5% and 28.5% and the porosity decreased by 26.1% and 47.8%, respectively, after WC-doping and heat treatment. During dry friction, the friction coefficient and wear rate of the NiCrBSi coating were about 0.47 and 1.4 × 10−5 mm3 N−1 m−1, respectively. These values were higher than those obtained on other coatings. In water conditions, all coatings showed a lower friction and wear rate than that in ambient air, which was as a result of the lubrication effect of water. Significantly, with WC-doping and heat treatment, the friction coefficients of both coatings were about 18.5% and 36.7%, respectively, lower than that of the NiCrBSi coating. Furthermore, the wear rates of both coatings were about 20% and 70%, respectively, lower than that of the NiCrBSi coating.
AB - NiCrBSi coating was deposited successfully on the surface of 316 stainless steel substrate by means of plasma spraying. The microstructures and mechanical property were analyzed by scanning electron microscopy, x-ray diffraction, and a Vickers hardness tester. The wear performances of the coatings sliding against the GCr15 ball under ambient air and water conditions were investigated, and two feasible approaches (tungsten carbide (WC)-doping and heat treatment) were used to improve the tribological performance. Results showed that the hardness of the NiCrBSi coating increased by 12.5% and 28.5% and the porosity decreased by 26.1% and 47.8%, respectively, after WC-doping and heat treatment. During dry friction, the friction coefficient and wear rate of the NiCrBSi coating were about 0.47 and 1.4 × 10−5 mm3 N−1 m−1, respectively. These values were higher than those obtained on other coatings. In water conditions, all coatings showed a lower friction and wear rate than that in ambient air, which was as a result of the lubrication effect of water. Significantly, with WC-doping and heat treatment, the friction coefficients of both coatings were about 18.5% and 36.7%, respectively, lower than that of the NiCrBSi coating. Furthermore, the wear rates of both coatings were about 20% and 70%, respectively, lower than that of the NiCrBSi coating.
KW - High heat treatment
KW - NiCrBSi coating
KW - Plasma spraying
KW - WC-doping
KW - Water condition
KW - Wear resistance
UR - https://www.scopus.com/pages/publications/85042114540
U2 - 10.1088/2051-672X/aa801c
DO - 10.1088/2051-672X/aa801c
M3 - 文章
AN - SCOPUS:85042114540
SN - 2051-672X
VL - 5
JO - Surface Topography: Metrology and Properties
JF - Surface Topography: Metrology and Properties
IS - 3
M1 - 034003
ER -