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1)  quarternary alloy anode
四元合金阳极
1.
The paper introduced production practice situation to use the quarternary alloy anode during zinc electrowinning in Zhuzhou Smelter,and discussed the role of the quaternary alloy anode in saving energy etc.
介绍了株冶在锌电积过程中使用四元合金阳极的生产实践,论述了四元合金阳极在节能等方面的作用。
2)  alloy anode
合金阳极
1.
The research works in the field of inert anode are reviewed,including metal oxide ceramic anode,alloy anode,cermet anode.
综述了国内外近年来在惰性阳极方面所做的研究,包括金属氧化物陶瓷阳极、合金阳极、金属陶瓷阳极。
2.
It indicated that CuO2 and CuAlO2 were formed on the electrode surface and Cu-Al alloy anode opssessed of excellent antcorrupt performance due to spinel-structured CuAlO2 formation on the electrode surface.
结果表明,电极表面生成CuO2及CuAlO2等氧化物,由于电极表面形成具有尖晶石结构的CuAlO2使得Cu-Al合金阳极具有更好的耐腐蚀性能。
3)  lead-based alloy anode
铅基多元合金阳极
4)  Four-part alloy
四元合金
5)  magnesium alloy anode
镁合金阳极
1.
Study on Electrochemical Performance of Magnesium Alloy Anodes in Qinghai-Tibetan Plateau Frozen Soil;
青藏高原冻土层中镁合金阳极电化学性能研究
6)  aluminum alloy anode
铝合金阳极
1.
Electrochemical performance of novel aluminum alloy anode in alkaline artificial sea water;
新型铝合金阳极在碱性海水溶液中的性能研究
2.
The test demonstrated that the application of epoxy glass scale coating (total thickness of the coating 250 - 300 μm) supported by sacrificial aluminum alloy anode could effectively protect the equipment from corrosion.
经试验,采用两底三面环氧玻璃鳞片涂料(漆膜总厚250~300μm)加牺牲铝合金阳极方案可达到理想的保护效果。
3.
High-performance aluminum alloy anode containing Al,Ga,In,Sn,Bi,Pb and Mn was prepared.
通过添加适量的Ga,In,Sn,Bi,Pb,Mn等合金元素制备了活化性能优良的七元铝合金阳极;采用极化曲线测试并结合扫描电子显微镜分析技术,研究了均匀化退火对铝阳极活化性能的影响。
补充资料:四元
1.指科举时代州县﹑府﹑省和廷试四级考试均名列第一。 2.数学名词。元朱世杰《四元玉鉴》以天﹑地﹑人﹑物代四个未知数。相当于现代代数的多元式。
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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