Failure Analysis of Air Vent Connected with Heat Supply Pipeline Under Manhole

IF 0.8 Q4 ELECTROCHEMISTRY Corrosion Science and Technology-Korea Pub Date : 2020-08-31 DOI:10.14773/CST.2020.19.4.196
Jeongmin Cho, Hobyung Chae, Heesan Kim, Jung-Gu Kim, W. Kim, Joon Cheol Jeong, Soo Yeol Lee, 조정민, 채호병, 김희산, 김정구, 김우철, 정준철, 이수열
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引用次数: 0

摘要

在区域供热系统中,为了消除管道中存在的对腐蚀耐久性和热效率有不利影响的空气,采用了与供热管道相连的通风口。近日,安装在人孔下22年的通风口被腐蚀,在通风口前端发现了几个针孔。为了确定失效的原因,对厚度减少、腐蚀产物和水质进行了检查。在覆盖绝缘子的通风口前端外侧,腐蚀损伤明显。管内形成了一层薄薄的氧化层,而管外则形成了由磁铁矿和赤铁矿组成的粗糙多孔的腐蚀产物。流入绝缘子的水经水解后被绝缘子吸收。水解后的绝缘子喷射出Cl-、SO4 -和NH4 +等腐蚀因子。研究结果表明,雨水对隔热层的腐蚀是导致通风口潜在失效的主要原因。
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Failure Analysis of Air Vent Connected with Heat Supply Pipeline Under Manhole, 맨홀에 설치된 지역난방 열공급관 에어벤트의 전단부 파손 원인 규명
The air vent connected to a heat supply pipeline in the district heating system has been used to eliminate the existing air in the pipe, which has a detrimental effect on corrosion durability and heat efficiency. Recently, the air vent installed under a manhole for 22 years was corroded and several pinholes were detected in the front-end of the air vent. To identify the cause of the failure, thickness reduction, corrosion products, and water quality were examined. The corrosion damage was significant at the outside of the front-end of the air vent where the insulator was covered. While a thin oxide layer was formed in the interior of the tube, the coarse and porous corrosion products consisting of magnetite and hematite were found externally. Water flowing into the thermal insulator was absorbed by the insulator following hydrolysis. The hydrolyzed insulator ejected the corrosion factors such as Cl-, SO4 2-, and NH4 +. The findings suggest that the corrosion under insulation due to rain water is the main cause of the underlying failure in the air vent.
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