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1)  anodic pickling
阳极除氧化膜法,阳极酸洗
2)  phosphate anodizing
磷酸阳极氧化法
3)  anodic oxidation film
阳极氧化膜
1.
An LCR broad-frequency digital electric bridge was used to directly measure the variations in the electric parameters of anodic oxidation films on LC4 Al alloy before and after pore sealing.
通过LCR宽频数字电桥直接测量LC4铝合金阳极氧化膜封孔前后的各种电参数变化,获得封孔信息,评价封孔质量;同时与测得的极化曲线、电化学交流阻抗谱进行对比,并结合FESEM和EDS对结果进行分析,结果表明,使用LCR宽频数字电桥评价铝合金阳极氧化膜的封孔质量,数据规律性强,操作简单易行。
2.
Structure, composition and corrosion resistance of the anodic oxidation film on the magnesium alloy surface were discussed.
研究了压铸镁合金AZ91的阳极氧化膜的工艺及其耐蚀性,探讨了镁合金表面阳极氧化膜的组织、相、成分及其耐蚀性。
3.
The effect of temperature on thickness and hardness of the obtained anodic oxidation film was studied, structure of the oxidation film was analyzed by SEM.
在硫酸电解液中加入适量由羧酸和有机化合物组成的添加剂 ,制得铝合金阳极氧化膜。
4)  anodized film
阳极氧化膜
1.
Sealing of anodized films on Al alloy with boehmite sol;
铝合金阳极氧化膜的勃姆石溶胶封闭
2.
Study on factors affecting quality of Al alloy anodized films;
影响铝合金阳极氧化膜质量因素的研究
3.
The lubricating particles of MoS2 are able to be co- deposited into the pores of aluminium anodized film with metal nickel by electrolytic coloration after the aluminium anodizing process with sulfuric acid.
利用电解着色技术对硫酸阳极氧化膜进行镍盐着色,使MoS2润滑性粒子同金属一起沉积于氧化膜孔隙之中。
5)  Anodic oxide film
阳极氧化膜
1.
Measurement of Cl-content in form-electrolyte of dielectric anodic oxide film.;
阳极氧化膜形成液中的氯离子检测
2.
Formation analysis of brown red spots on the surface of sulfuric acid anodic oxide film on aluminium alloy
铝合金硫酸阳极氧化膜棕红色印迹成因分析
3.
X ray photoelectron spectroscopy (XPS) is used to examine the anodic oxide film formed on uranium metal in 0.
采用X射线光电子能谱法 (XPS)研究了金属铀在 0 8mol/LNaOH溶液中阳极氧化膜的组成。
6)  anodic film
阳极氧化膜
1.
A pulse current sealing method for an anodic film on aluminum alloy;
铝合金阳极氧化膜双向脉冲封闭工艺
2.
Modification of copper plating at low current density on anodic film of LC4 aluminum alloy;
小电流镀铜对LC4铝合金阳极氧化膜的改性作用
3.
Properties of Al-Li anodic films by hydrotalcite precursor method;
水滑石前驱法制备的Al-Li复合阳极氧化膜的性能
补充资料:磷酸阳极氧化
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性质:铝及铝合金在磷酸溶液中,在直流电的作用下,被黏结件(阳极)表面上形成氧化膜层,它黏结性好于铬酸阳极氧化得到的氧化膜。粘黏复合材料时可作为黏结表面层。

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