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1)  insoluble anode
不溶性阳极
1.
Some new processes and technologies for electronics finishing were introduced, such as wafer plating, electrochemical mechanical polishing, microelectro-mechanical system plating, copper plating using insoluble anode, platinized niobium electrode, lead and cadmium free eleclroless nickel, recycling of alkaline etching solution and reclaiming system of copper.
介绍了电子电镀中的若干新工艺新技术,如芯片电镀、电化学机械研磨、微机电系统电镀、不溶性阳极电镀铜、镀铂铌电极以及无铅无镉中磷光亮化学镀镍、碱性蚀刻液再生和铜回收系统等。
2.
Even current distribution was obtained when insoluble anodes were employed in the plating tank.
在镀槽中采用不溶性阳极可获得均匀的电流分布;采用辅助槽时,能得到综合性能最好的锌-铁合金镀层。
2)  inert anode
不溶性阳极(惰性阳极)
3)  non-solution anode
Ti-Ni不溶性阳极
4)  insoluble anode
不溶阳极
1.
The process of decoppering through insoluble anode electrolysis in the solution produced by leaching high grade matte nickel using chlorine is introduced in this paper.
详细介绍了氯化浸出高冰镍溶液采用不溶阳极电解脱铜的试验过程。
2.
The process of decoppering through insoluble anode electrolysis in the solution produced by leaching high grade matte nickel using chlorine is intro-duced in this paper.
本文介绍了氯化浸出高冰镍溶液采用不溶阳极电解脱铜的方法。
5)  insoluble anode tank
不溶阳极电极槽
6)  soluble anode
可溶性阳极
1.
Wear resistance of nanocrystalline Ni-P-SiC composite coating produced by brush plating using soluble anode;
可溶性阳极电刷镀纳晶Ni-P-SiC复合镀层的耐磨损性能
2.
Ni-Fe alloy coatings with varied ferrum concentration were prepared by brush plating using soluble anode.
采用可溶性阳极电刷镀技术制备镍铁合金镀层,研究了合金元素Fe在刷镀层中的作用机理,分析了镀层的组织结构和性能。
补充资料:不溶性阳极
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性质:阴极保护中,在很高的阳极电流密度下长期工作,极化很小、腐蚀极微的辅助阳极。铂是一种理想的不溶性阳极,但价格较贵且稀缺。镀铂钛电极其性能几乎与铂相同,是一种新型不溶性阳极。它质轻、体积小、安装和使用十分方便,排流量大、消耗甚微、寿命长且无环境污染。常用于海水及化学介质的阴极保护中。

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