卡苏斯帕达污水处理厂科罗西帕达滤料泵分析

Muhammad Ichsanudin, Imam Prabowo, M. Nasirudin
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摘要

离心泵是工业上应用最广泛的设备,因此对泵部件的腐蚀进行研究是十分必要的。由于腐蚀而导致的材料退化肯定是时而快时而慢的。本研究旨在确定污水处理厂过滤给料泵腐蚀的最显著因素和腐蚀类型。通过对设备运行、检查、维修和更换数据进行目视检查和文献研究来识别故障。根据这些数据,对淡水的侵蚀性进行分析,对泵部件腐蚀失效的原因进行操作和维护分析,以及对泵部件发生腐蚀的类型进行分析。此外,还分析了氧化还原反应和载荷之间可能的腐蚀失效原因组合,从而导致应力腐蚀开裂和疲劳腐蚀。通过研究发现,造成腐蚀的主要原因是操作、维护和环境因素。缺乏维护是造成腐蚀的最主要原因。不进行预测性维护会对泵套盖造成巨大的损坏。氧差因素还会导致套管、磨损环眼、轴承支架和轴的失效。识别滤料泵部件腐蚀类型的结果包括均匀腐蚀、点蚀、缝隙腐蚀、应力腐蚀开裂(SCC)、疲劳腐蚀、侵蚀腐蚀和空化腐蚀。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Analisis Korosi pada Filter Feed Pump Studi Kasus pada Waste Water Treatment Plant
Centrifugal pumps are the most widely used equipment in the industry, so it is essential to study the corrosion of pump components. Material degradation through corrosion is sure to happen quickly and slowly. This study aims to determine the most significant factor causing corrosion and the types of corrosion in the filter feed pump installed in the wastewater treatment plant. Identification of failures is made by conducting visual inspections and literature studies regarding the plant operation, inspection, repair, and replacement data. From these data, an analysis of the aggressiveness of fresh water, an analysis of the operation and maintenance of the causes of corrosion failure on pump components, and the type of corrosion that occurred on pump components are carried out. In addition, analyses are also carried out regarding the possible combination of causes of corrosion failure between redox reactions and loading, which causes stress corrosion cracking and fatigue corrosion. Based on the studies, it was found that the operation, maintenance, and environmental factors cause the corrosion that occurs. Lack of maintenance is the most dominant fault as factor causing corrosion. Not doing predictive maintenance causes tremendous damage to the pump casing cover. The oxygen difference factor also causes failure of the casing, wear ring eye, bearing bracket, and shaft. The results of identifying the types of corrosion that occur in the filter feed pump components include uniform corrosion, pitting corrosion, crevice corrosion, stress corrosion cracking (SCC), fatigue corrosion, erosion-corrosion, and cavitation corrosion.
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