HVOF喷涂WC-10Co4Cr涂层的性能及滑动磨损机理

陈小明, 周夏凉, 吴燕明, 伏利, 赵坚, 王莉容, 毛鹏展, 赵鹏, 马红海

表面技术 ›› 2017, Vol. 46 ›› Issue (3) : 119-123.

PDF(9664 KB)
PDF(9664 KB)
表面技术 ›› 2017, Vol. 46 ›› Issue (3) : 119-123. DOI: 10.16490/j.cnki.issn.1001-3660.2017.03.018
表面摩擦磨损与润滑

HVOF喷涂WC-10Co4Cr涂层的性能及滑动磨损机理

  • 陈小明1, 周夏凉1, 吴燕明1, 伏利2, 赵坚2, 王莉容3, 毛鹏展3, 赵鹏4, 马红海4
作者信息 +

Properties and Sliding Wear Mechanism of WC-10Co4Cr Coating Prepared by HVOF

  • CHEN Xiao-ming1, ZHOU Xia-liang1, WU Yan-ming1, FU Li2, ZHAO Jian2, WANG Li-rong3, MAO Peng-zhan3, ZHAO Peng4, MA Hong-hai4
Author information +
文章历史 +

摘要

目的 研究WC-10Co4Cr涂层的耐滑动磨损性能及机理。方法 在0Cr13Ni5Mo不锈钢基体上,采用超音速火焰喷涂(HVOF)制备了WC-10Co4Cr金属陶瓷涂层。分析了WC-10Co4Cr涂层的物相组成、显微组织,并测试了其硬度、结合强度、孔隙率及在560 r/min和1120 r/min转速下的滑动磨损性能。结果 涂层的显微硬度为1325HV0.2,结合强度为72 MPa。涂层组织致密,孔隙率为0.76%。在560 r/min下磨损10 h,涂层与基体的磨损失重比为1:138.36;在1120 r/min下磨损10 h,涂层与基体的磨损失重比为1:127.44。结论 在滑动摩擦磨损的初期,涂层的磨损失效机制主要表现为磨粒磨损。随着滑动速度的增大,涂层的磨损失效机制主要表现为疲劳磨损。

Abstract

The work aims to study sliding wear resistance and wear mechanism of WC-10Co4Cr coating. WC-10Co4Cr metal ceramic coating was prepared on 0Cr13Ni5Mo stainless steel by using HVOF. Phase composition and microstructure of the coating were characterized. The micro-hardness, bond strength, porosity, sliding wear at 560 r/min and 1120 r/min were tested. Average micro-hardness was 1325Hv0.2, bond strength 72 MPa, porosity 0.76%, weight loss ratio 1:138.36 after continuous wear for 10 h at 560 r/min, 1:127.44 after continuous wear for 10 h at 1120 r/min. At the beginning of sliding wear, wear failure mechanism of the coating is mainly present as abrasive wear. With the increase of sliding velocity, the wear failure mechanism is mainly present as fatigue wear.

关键词

超音速火焰喷涂;WC-10Co4Cr涂层;显微硬度;耐磨性能

Key words

high velocity oxy-fuel spraying (HVOF); WC-10Co4Cr; micro-hardness; wear resistance

引用本文

导出引用
陈小明, 周夏凉, 吴燕明, 伏利, 赵坚, 王莉容, 毛鹏展, 赵鹏, 马红海. HVOF喷涂WC-10Co4Cr涂层的性能及滑动磨损机理[J]. 表面技术. 2017, 46(3): 119-123
CHEN Xiao-ming, ZHOU Xia-liang, WU Yan-ming, FU Li, ZHAO Jian, WANG Li-rong, MAO Peng-zhan, ZHAO Peng, MA Hong-hai. Properties and Sliding Wear Mechanism of WC-10Co4Cr Coating Prepared by HVOF[J]. Surface Technology. 2017, 46(3): 119-123

基金

浙江省科技计划项目(2014C31156);浙江省科学计划项目(2013C31044)

PDF(9664 KB)

Accesses

Citation

Detail

段落导航
相关文章

/