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1.
Impressed current cathodic protection system for ship hull
GB/T3108-1982船体外加电流阴极保护系统
2.
Study on the Distribution of Protection Current and Protection Potential in Impressed Current Cathode Protection System Design
船体外加电流阴极保护系统设计中问题的探讨
3.
Application of Impressed Electric Current Cathodic Protection to Port Engineering
外加电流阴极保护技术在港口工程中的应用
4.
An Analysis to the Electrochemical Procedure for the Impressed-current Cathode Protection of Long-distance Underground Pipelines;
地下长输管道外加电流阴极保护的电化学过程分析
5.
Not suited for permanent immersion or in association with impressed current catholic protection.
本品不适用于长期浸泡的部位,不能与外加电流阴极保护装置接触。
6.
Research for Impressed Electric Current Cathodic Protection Anti-co Port Rrosion Technology of Steel Pipe Pile in Wharf Engineering
码头工程钢管桩外加电流阴极保护防腐蚀技术研究
7.
Application of Impressed Current Cathodic Protection System in Steel Reinforced Concrete Deck
外加电流阴极保护系统在钢筋混凝土桥面中的应用
8.
Also for impressed current catholic protection, when the anticorrosive paint system is intact.
当防腐漆系列完整无损时,可涂布于有外加电流阴极保护装置的部位。
9.
Impressed current cathodic protection system for coastal structures
GB/T17005-1997滨海设施外加电流阴级保护系统
10.
Selection of Electric Current Intensity for Cathodic Protection of Buried Steel Pipelines
埋地钢质管道阴极保护电流密度选择
11.
An Investigation of the Cathodic Protection Potential Distribution on the Exterior of Steel Tank Bottom;
金属储罐底板外侧阴极保护电位分布规律研究
12.
Analysis and Solution for Current Overload and Potential Reversion Happened in Cathodic Protection System
阴极保护系统输出电流和开路电位异常的故障分析
13.
Applicability of-850 mV(CSE) Cathodic Protection Potential Criterion under AC Interference Condition
交流电干扰下-850mV(CSE)阴极保护电位准则的适用性研究
14.
Technical standard for external surface cathodic protection of bottom of steel storage tanks
钢制储罐罐底外壁阴极保护技术标准
15.
The electrical isolation of cathodic protected pipelines
阴极保护管道的电绝缘标准
16.
Application of Cold-Cathode Trigger Tube in Protective Circuit of MPM
冷阴极触发管在MPM保护电路中的应用
17.
Determination of Cathodic Protection Parameters of Grounding Grid
接地网阴极保护中最佳保护电位的研究
18.
Calcareous deposits are usually formed on cathodically protected steel surface in sea water, and their importance in reducing the current requirement to maintain adeguate protection is generally recognized.
钙质沈积通常会在阴极保护的海水结构物上沈淀,而减少要达保护电位所需的电流密度。