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微弧氧化提高铝合金耐磨性能的研究

唐艳茹 潘利华 常宇 谢文兵

表面技术Issue(2):48-54,7.
表面技术Issue(2):48-54,7.DOI:10.16490/j.cnki.issn.1001-3660.2015.02.010

微弧氧化提高铝合金耐磨性能的研究

Improving the Wear Resistance of Aluminum Alloy through the Micro-arc Oxidation Technology

唐艳茹 1潘利华 2常宇 2谢文兵2

作者信息

  • 1. 长春师范大学,长春130031
  • 2. 中国科学院长春应用化学研究所,长春130022
  • 折叠

摘要

Abstract

ABSTRACT:Objective To improve the comprehensive performance of aluminum alloy, especially the wear resistance. Methods Self-lubricating ceramic layers were prepared by the micro-arc oxidation technology on the surface of aluminum alloy. The electro-lytic parameters for improving the comprehensive performance of the micro-arc oxidized ceramic membrane on the aluminum alloy and the role of graphite in the micro-arc oxidation of aluminum alloy were explored by analyzing the effects of electrolytic parameters ( current density, frequency ratio, energy level ratio) on the wear resistance of the micro-arc oxidized ceramic membrane and the influences of graphite addition on the thickness of ceramic membrane, surface morphology, phase composition, wear resistance and corrosion resistance. Results The optimal electrolytic parameters were determined. Graphite addition could not only decrease the friction coefficient of the micro-arc oxidized ceramic membrane on the aluminum alloy, but also improve the corrosion resistance of aluminum alloy. Conclusion With self-lubricating property and ultrahigh electric conductivity, graphite could promote the mem- brane forming reaction during the micro-arc oxidation of aluminum alloy, increase the thickness of the ceramic layer and smooth the surface morphology of the as-obtained aluminum alloy.

关键词

铝合金/微弧氧化/耐磨性/石墨

Key words

aluminum alloy/micro-arc oxidation/wear resistance/graphite

分类

矿业与冶金

引用本文复制引用

唐艳茹,潘利华,常宇,谢文兵..微弧氧化提高铝合金耐磨性能的研究[J].表面技术,2015,(2):48-54,7.

基金项目

长春市科技局项目(13KG40) Fund:Supported by Changchun City Technology Bureau Project(13KG40) (13KG40)

表面技术

OA北大核心CSCDCSTPCD

1001-3660

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