| 1. | Impressed current cathodic protection system for ship hull 船体外加电流阴极保护系统 |
| 2. | Technical specification of impressed current deep groundbeds 强制电流深阳极地床技术规范 |
| 3. | Impressed current cathodic protection system for coastal structures 滨海设施外加电流阴级保护系统 |
| 4. | Anode components of impressed current cathodic protection for ships 船舶外加电流阴极保护用辅助阳极组件 |
| 5. | Design specification of impressed current cathodic protection for buried steel pipeline 埋地钢质管道强制电流阴极保护设计规范 |
| 6. | Not suited below deep load line in association with impressed current cathodic protection 当装有外加电流阴极保护装置时,本品不宜涂在重载水线以下。 |
| 7. | 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。 |
| 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. | For protection of blast cleaned steel during storage , fabrication and construction periods , including areas which will be submerged in service , with ( or without ) impressed current catholic protection 作为在储存、加工和建造期间经喷砂除锈的钢板的保护涂层。也可涂于带外加电流阴极保护装置和不带外加电流阴极保护装置的船体水下部位。 |
| 10. | Ir - ta - ti metal oxide coated titanium anodes of variable composition were prepared by thermal decomposition . their micro morphorogies and electrochemical properties were characterized by scanning electron microscope , open circuit potential , cyclic voltammetry , consumption rate measurements and accelerated life test . the sem results indicated that all coatings were of a porous and cracked - mud microstructure influenced greatly by the composition of coatings . the electrochemical measurements showed that the ir - ta - ti ternary oxide - coated anodes exhibited excellent electrochemical activity and electrochemical stability in both acidic media and seawater which were affected by the composition and microstructure of the coatings . owing to good corrosion resistance and low consumption rate in seawater , metal oxde coated anodes belong to insoluble material , and can be potentially applid in impressed current cathodic protection systems as an anode 采用热分解方法在钛基体上制备铱钽钛金属氧化物阳极,用扫描电镜对阳极涂层显微形貌进行分析,通过强化电解寿命试验、开路电位测试、消耗率试验及循环伏安曲线研究了金属氧化物阳极的电化学性能. sem分析结果表明铱钽钛金属氧化物阳极涂层呈现多孔多裂纹形貌结构.随阳极涂层组成不同,涂层显微形貌表现出很大差异,这种差异直接影响阳极电化学性能.电化学性能试验结果表明铱钽钛金属氧化物阳极在酸性介质和海水中具有良好的电化学稳定性和电化学活性.此外,铱钽钛金属氧化物阳极在海水中的消耗率很低,属于不溶性的阳极材料,作为外加电流阴极保护用辅助阳极具有广泛的应用前景 |