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中国腐蚀与防护学报  2011, Vol. 31 Issue (4): 315-318    
  研究报告 本期目录 | 过刊浏览 |
化学镀Ni-B合金镀层性能
邝刘伟1,范希梅1,郝军2,张会广1
1. 西南交通大学材料学院 材料先进技术教育部重点实验室 成都 610031
2. 吉林石油集团有限责任公司基建处 松原 138000
STUDY ON THE PROPERTIES OF ELECTROLESS Ni-B
KUANG Liuwei1, FAN Ximei1, HAO Jun2, ZHANG Huiguang1
1. Key Laboratory of Advanced Technologies of Materials of Ministry of Education, Southwest Jiaotong University, Chengdu 610031
2. Construction Department, Petro-China Jilin Oilfield Company, Songyuan 138000
全文: PDF(1656 KB)  
摘要: 通过改变镀液还原剂的含量和加入定量的乙酸钠,研究对化学镀镍硼合金形貌和性能的变化。从晶体结构、镀层形貌、硬度和耐磨曲线等几方面来分析加入乙酸钠12 g/L时,化学镀 Ni-B合金镀层形貌和性能改善的原因。乙酸钠起到缓冲剂的作用,降低了化学镀Ni-B的镀速,提高了化学镀Ni-B的致密度,改善了镀层的质量从而提高镀层的各种性能。
关键词 化学镀Ni-B晶体结构表面形貌磨损    
Abstract:In order to enhance the properties of electroless Ni-B, the changes in morphology and performance of electroless Ni-B alloy was studied by changing the contents of reducing agent and adding quantitative sodium acetate. The reasons of the morphology and performance of the electroless Ni-B were improved while adding sodium acetate 12 g/L are analyzed based on crystal structure, coating morphology, hardness, wear curves. It was found that sodium acetate as a buffer can reduce the deposition rate of the chemical plating Ni-B, increase the density of the chemical plating Ni-B, and improve the quality of coating in the process
Key wordselectroless Ni-B    crystal structure    coating morphology    wear
收稿日期: 2010-06-22     
ZTFLH: 

TG 153.1

 
基金资助:

西南交通大学科技发展基金项目(2007B08)和吉林油田公司科技项目资助

通讯作者: 范希梅     E-mail: xmfan@swjtu.edu.cn
Corresponding author: FAN Ximei     E-mail: xmfan@swjtu.edu.cn
作者简介: 邝刘伟,男,1983年生,硕士生,研究方向为材料表面技术

引用本文:

邝刘伟,范希梅,郝军,张会广. 化学镀Ni-B合金镀层性能[J]. 中国腐蚀与防护学报, 2011, 31(4): 315-318.
KUO Liu-Wei. STUDY ON THE PROPERTIES OF ELECTROLESS Ni-B. J Chin Soc Corr Pro, 2011, 31(4): 315-318.

链接本文:

https://www.jcscp.org/CN/      或      https://www.jcscp.org/CN/Y2011/V31/I4/315

[1] Gawrilov G G. Chemical (Electroless) Nickel-Plating [M]. Redhill:Portcullis Press Limited, 1979, 529-539

[2] Mallory G O, Hajdu J B. Electroless Plating Fundamentals and Applications [M]. Florida: AESF. 1990, 252-256

[3] Riedel W. Electroless Nickel Plating, Metals Park [M]. Ohio: ASM International, 1991, 48-181

[4] Krishnavenia K, Sankara N T S N, Seshadri S K. Electroless Ni-B coatings: preparation and evaluation of hardness and wear resistance [J].Surf. Coat. Technol., 2005, 190(1): 115-121

[5] Lo Y L, Hwang B J. Kinetics of ethanol oxidation on electroless Ni-Pt/SnO2Ti electrodes in KOH solutions [J]. Electrochem. Soc.,1995, 142(2): 445-450

[6] Gorbunova K M, Ivanov M V, Moiseev V P. Electroless deposition of nickel-boron alloys: mechanism of process, structure, and some properties of deposit [J]. J. Electrochem. Soc., 1973, 120(5): 613-618

[7] Baurand D W. ASM Handbook (Surface Engineering 5- Electroless Plating) [M]. ASM, 1994: 290

[8] Delaunois F, Lienard P. Heat treatments for electroless nickel-boron plating on aluminium alloys [J]. Surf. Coat. Technol., 2002, 160(2): 239-248

[9] Wang D Q, Shi Z Y, Zou L J. A liquid aluminum corrosion resistance surface on steel substrate [J]. Appl. Surf. Sci., 2003, 214(1): 304-311

[10] Krishnaveni K, Sankara N T S N. Electroless Ni--P/Ni-B duplex coatings: preparation and evaluation of microhardness, wear and corrosion resistance [J]. Surf. Coat. Technol., 2003, 82(3): 771-779

[11] Suo Y Z. Composite Deposits and Technical Deposits [M]. Beijing:Chemical Industry Press, 2008: 26

     (索玉柱. 复合镀镍和特种镀镍 [M]. 北京:化学工业出版社,2008: 26)
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