Influence of Aging Heat Treatment on Pitting Corrosion Resistance of Martensitic Stainless Steel

A. Assi
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Abstract

This research aim to study the influence of aging heat treatment on the pitting corrosion resistance of martensitic stainless steel (MSS), where a number of martensitic stainless steel specimens were subjected to solution treatment at 1100 oC for one hour followed by water quenching then aging in the temperatures range (500-750) oC for different holding times (1, 5, 10, 15 & 20) hr. Accelerated chemical corrosion test and immersion chemical corrosion test were performed on samples after heat treatment. The results of the research showed that the pitting corrosion resistance is significantly affected by the aging temperature. where samples that aged at 500 °C have the highest rate of corrosion due to an increase in the ratio of the Delta ferrite (δ-ferrite) and very soft precipitates from other phases of heterogeneous form in the basic martensitic phase; which leads to increase corrosion rate. From the other side, the aged samples in the temperature range (550–650) °C have the smaller rate of corrosion, this is due to the high volumetric ratio of remaining austenite. The aged samples at temperatures above 650 °C shows a medium corrosion rate. It was also found that the type of pits results from both the chemical corrosion tests and their shape were not related to the ferrite type and the carbides present in the microstructure.
时效热处理对马氏体不锈钢耐点蚀性能的影响
本研究旨在研究时效热处理对马氏体不锈钢(MSS)耐点蚀性的影响,将一些马氏体不锈钢试样在1100℃固溶处理1小时,然后进行水淬,然后在500-750℃温度范围内时效,保温时间分别为1、5、10、15和20小时。对热处理后的试样进行加速化学腐蚀试验和浸没化学腐蚀试验。研究结果表明,时效温度对其抗点蚀性能有显著影响。其中,在500℃时效的样品由于δ铁素体(δ铁素体)的比例增加,以及碱性马氏体相中其他非均相形式的非常软的析出物的比例增加,腐蚀速率最高;这导致腐蚀速度加快。另一方面,温度范围(550-650)°C的时效样品具有较小的腐蚀速率,这是由于残余奥氏体的体积比高。时效试样在650℃以上表现为中等腐蚀速率。同时发现,化学腐蚀试验结果的凹坑类型及其形状与微观组织中存在的铁素体类型和碳化物无关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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