| 1. | Anti - corrosion performance of galranizing layer refers to test figures of average cormsive speed 镀锌层耐腐性能参见镀锌层平均腐蚀速度试验数据。 |
| 2. | Grey forecasting of corrosion speed for electric heat - concomitance pipes of buried pipeline at liaohe teshi 辽河特石埋地管道电伴热管腐蚀速度灰色预测 |
| 3. | In seamud containing active srb , the corrosion rate of low - alloyed steels decreased firstly and then increased 在含有活性srb的海泥环境中,弱极化曲线和显示,低合金钢的腐蚀速度先降低,后增加。 |
| 4. | According to the characteristics of the eis change , it is an alternative mechanism that bioorganic sulphide accelerated the corrosion 根据其后期腐蚀速度变化和阻抗谱特征,有可能生物有机硫化物的存在加快了其腐蚀速度。 |
| 5. | The result showed that the models could satisfactorily predict the corrosion rate of carbon steel and low alloy steel in different seawater environments 结果表明该模型可以较准确的预测碳钢、低合金钢在不同海域的腐蚀速度。 |
| 6. | Subsequently , the crystal structure and type of iron sulphide changed gradually , there existed crannies in corrosion products , resulting the increase of corrosion rate 初期硫化物生成,腐蚀速度变化不大,后期随着硫化物的增加,不再具有保护性,而使腐蚀速度加快。 |
| 7. | Flow meters may be affected , giving incorrect reading . the rate of corrosion of pipeline may also increase . the abnormal current induced in power grids may damage transformers because of overheating 流量计可能会受到干扰,使数据失误管道的腐蚀速度亦可能会增快电力网络上的不正常电流可能使变压器因过热而烧毁。 |
| 8. | Flow meters may be affected , giving incorrect reading . the rate of corrosion of pipeline may also increase . the abnormal current induced in power grids may damage transformers because of overheating 流量计可能会受到干扰,使数据失误;管道的腐蚀速度亦可能会增快;电力网络上的不正常电流可能使变压器因过热而烧毁。 |
| 9. | Scan speed ’ s affection for cable corrosion speed is studied , it is founded that the rapider the scanning rate , the bigger the measured corrosion current density , that is the quicker the corrosion rate , 8mv / s is the best scan speed . 2 研究了扫描速度对钢绞线腐蚀速度的影响;提出了扫描速度越大,钢绞线腐蚀电流密度也越大,腐蚀速度越快,其中8mv / s为最佳扫描速度。 |
| 10. | And then electroplate nickel - sealing with solid particulate , which is to make micro - crack chromium when electroplating chromium again , this can avoid unsmoothness , and slower corrosion speed , as a result , improve defence performanc e 再镀一层含有固体微粒的镍封,令到再镀铬时形成微孔铬,从而防止产生大而深的直贯基体金属的少量腐蚀沟纹和凹坑,向横向发展,减缓了穿透基体的腐蚀速度,进一步提高了防护性能。 |