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1)  cathodic protection technology
阴极保护技术
1.
Aiming the severe corrosion at downhole string inner-outer surface,screw,node and pumping rod of oil-water well downhole string curtailed production period of well in Xianhe oil production plant, the experiments of tubing cathodic protection technology was researched.
针对现河采油厂油水井井下油管内外壁、丝扣、节箍及抽油杆腐蚀严重,导致油井生产周期缩短的现状,开展了油管阴极保护技术实验。
2)  cathodic protection
阴极保护
1.
Study on numerical calculation method in the cathodic protection of the corrosion field;
数值计算在腐蚀领域阴极保护设计中的应用
2.
The problem and solutions of initial polarization of marine steel structures in the application of cathodic protection;
海洋钢结构阴极保护初始极化问题及解决途径
3.
The application of 2-D finite element method in calculating cathodic protection fields of steel in marine environment;
海水中A3钢样阴极保护电化学场的二维有限元计算
3)  cathode protection
阴极保护
1.
Measurement on the cathode protection potential of under-ground pipe;
地下管道阴极保护电位测量
2.
The application of cathode protection method in steel water supply pipe;
阴极保护技术在给水钢管上的应用
3.
Application of cathode protection technology to anti-corrosion treatment for buried natural gas pipelines of gas-fired power plants
阴极保护技术应用于燃气电厂输气地埋管道的防腐处理
4)  catholic protection
阴极保护
1.
The catholic protection (CP) effectiveness of metal pipe with sleeve was experimentally investigated.
以简化电路模型为依据 ,用实验方法对加外套管的管道阴极保护效果进行了分析。
2.
The entire scheme of the pipeline catholic protection system wireless supervisory system based on the GPRS technology,various functions,the system characteristic are described.
分析了多种无线通信方式的优劣,论述了采用GPRS用于远程数据传输的优点,给出了基于GPRS技术的长输管道阴极保护系统的无线监控系统的整体方案、各功能的实现、系统的特点,并简单介绍了GPRS技术在东黄输油管道阴极保护无线数据采集系统的成功应用。
5)  cathode technique
阴极技术
1.
One of the main reasons for the gap is attributed to our behindhand cathode technique.
本文对铝电解槽内衬应力和热平衡设计、阴极材料质量和焙烧方法等阴极技术问题进行了描述和分析。
6)  cathode protection method
阴极保护法
1.
The exploration of the cathode protection method in improving the durability of concrete roads
阴极保护法提高混凝土路面耐久性的探讨
补充资料:阴极
分子式:
CAS号:

性质:电池中发生还原反应的电极。对于电解电池,负极发生的是还原反应,如Cu2++2e-→Cu↓,故为阴极。对于蓄电池,放电时正极发生还原,为阴极;但充电时正极是氧化反应,成为阳极。一般所称蓄电池的阴极均指其正极。

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