谭志豪, 余基来, 余梦生, 张新. 以Ni-P为基质的SiC和WC耐磨复合镀层[J]. 工程科学学报, 1994, 16(5): 450-453,458. DOI: 10.13374/j.issn1001-053x.1994.05.010
引用本文: 谭志豪, 余基来, 余梦生, 张新. 以Ni-P为基质的SiC和WC耐磨复合镀层[J]. 工程科学学报, 1994, 16(5): 450-453,458. DOI: 10.13374/j.issn1001-053x.1994.05.010
Tan Zhihao, Yu Jilai, Yu Mengsheng, Zhang Xin. The Antiwear Properties of Composite Coatings with Ni-P as Matrix and SiC or WC as the Dispersing Agent[J]. Chinese Journal of Engineering, 1994, 16(5): 450-453,458. DOI: 10.13374/j.issn1001-053x.1994.05.010
Citation: Tan Zhihao, Yu Jilai, Yu Mengsheng, Zhang Xin. The Antiwear Properties of Composite Coatings with Ni-P as Matrix and SiC or WC as the Dispersing Agent[J]. Chinese Journal of Engineering, 1994, 16(5): 450-453,458. DOI: 10.13374/j.issn1001-053x.1994.05.010

以Ni-P为基质的SiC和WC耐磨复合镀层

The Antiwear Properties of Composite Coatings with Ni-P as Matrix and SiC or WC as the Dispersing Agent

  • 摘要: 研究了以Ni-P为基质,SiC、WC为分散剂,镀液中加入混合稀土的两种耐磨复合镀层.结果表明:Ni-P-SiC和Ni-P-WC镀层的抗擦伤式磨损能力分别为Q235钢试件的5倍和4.5倍.还研究了颗粒浓度和镀时等因素对耐磨性能的影响.

     

    Abstract: This paper investigated the antiwear properties of composite coatings with Ni-P as matrix and SiC or WC as the dispersing agent, containing mixed rare earth in the solution.The results show that the coatings of Ni-P-SiC and Ni-P-WC possess antiwear capacities in low-stress abrasive wear, and their service lives are respectively 5 and 4.5 times longer than that of the uncoat plain carbon steel Q235. The effect of particle concentration and electroplating time on antiwear capacity is also studied.

     

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