摘要
为实现高强韧超细晶AZ91D镁合金的有效防护,利用硅酸盐电解液对其进行微弧氧化(MAO)。分析了工作电压、频率、占空比和氧化时间对所得膜层耐蚀性的影响,通过正交试验优选出MAO工艺,其参数如下:正电压400 V,负电压-15 V,频率600 Hz,占空比30%,氧化时间20 min。与常规MAO工艺相比,该MAO膜厚度达到19.23μm,表面孔隙率约为8.3%,且点蚀电位更高(-0.199 V相对于SCE)、阻抗值更大(776.5 kΩ·m^2)、有效保护时间延长了1.29倍。
The micro-arc oxidation (MAO) coatings were successfully formed on a hulk ultra-fine grained (UFG) AZ91D alloy in a silicate electrolyte, and then the MAO process parameters were optimized via an orthogonal test to improve the surface protection of the UFG Mg substrate. The optimum MAO parameters are 400 V of maximum peak forward voltage, --15 V of peak negative anode voltage, 600 Hz of operating frequency, 30% of duty cycle ratio and 20 rain of oxidation time. The MAO coating formed under the above conditions had a lower porosity (8.3%), greater even thickness (19.23μm), higher pitting potential (-0. 199 V), larger Rt value (7 765 kΩ.cm2) and longer proctection time (1.29 times).
出处
《腐蚀与防护》
CAS
北大核心
2013年第9期825-830,共6页
Corrosion & Protection
基金
国家自然科学基金(51141002)
江苏省自然科学基金(BK2010521)
南通市应用研究计划(BK2012042)
关键词
微弧氧化
镁合金
超细晶
耐蚀性
工艺优化
micro-arc oxidation(MAO)
Mg alloy
ultra-fine grained (UFG)
corrosion resistance
process optimi- zatlon