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Japanese and Foreign Criteria for Cathodic Protection of Steel Pipelines and Structures

机译:钢管和结构的阴极保护日本和国外标准

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As a result of satisfactory performance, cathodic protection gained worldwide recognition as the most effective and economical method to protect coated steel pipelines, structures, canal gates, condensers, and others against corrosion together with stress corrosion cracking. The effectiveness of cathodic protection in practice can be established in more than one way, and several criteria have been used in the past to prove whether protection is complete. This paper reviews the criteria for cathodic protection of coated steel pipelines and structures in the environments, including seawater, soil, and concrete. As for criteria for cathodic protection of steels in seawater and soil, the action of bacteria is considered. A criterion that indicates degree of protection, including overprotection, is obtained through measuring the potential of the protected structure. The potential of a cathodically protected structure is obtained ideally by placing the reference electrode as close as possible to the structure to avoid an IR drop through coatings and the electrolyte such as soil and concrete. In the case of potential measurement of pipeline, the instant-off method, with steel probes simulating coating defects, is recommended as an effective method to avoid an IR drop. A particular emphasis is placed on the necessity for establishment of the criterion to assess the effect of induced AC voltage on a cathodic protection system for buried pipeline.
机译:由于性能令人满意,阴极保护获得全球识别,作为保护涂层钢管,结构,运河门,冷凝器等最有效和最经济的方法,以及与应力腐蚀裂缝一起腐蚀。在实践中的实际情况中的有效性可以以多种方式建立,过去已经使用了几个标准来证明保护是否完整。本文综述了涂层钢管管道和结构的阴极保护标准,包括海水,土壤和混凝土。至于海水和土壤中钢的阴极保护标准,考虑了细菌的作用。通过测量受保护结构的电位,获得指示保护程度的标准,包括过度保护。理想地通过将参考电极尽可能靠近结构来获得阴极保护结构的潜力,以避免通过涂层和诸如土壤和混凝土的电解质的IR降。在管道潜在测量的情况下,建议使用钢探针模拟涂层缺陷的瞬间脱离方法作为避免IR下降的有效方法。特别强调建立标准的必要性,以评估诱导的AC电压对埋地管道的阴极保护系统的影响。

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