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Intergranular corrosion susceptibility of a novel Super304H stainless steel

机译:新型Super304H不锈钢的晶间腐蚀敏感性

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摘要

The newly developed Super304H austenitic stainless steel is being widely used in ultra supercritical fossil fired boilers because of its superior high temperature strength, good oxidation resistance and steam corrosion resistance. But its high carbon content increases greatly its intergranular corrosion susceptibility. A 1000 MW ultra supercritical fossil fired boiler being installed in South China experienced a severe superheater leakage accident recently during a water pressure testing. After failure analysis, it was found that the superheater tubes, made of Super304H, were attacked by stress corrosion cracking which was induced by intergranular corrosion. The external reason for the intergranular corrosion was the bare laying of the tubes at seaside environment for a few months and the internal reason was the very high intergranular corrosion susceptibility of the tubes. This aroused our concern on the intergranular corrosion resistance of this material and further experiment was carried out by selecting different batches of Super304H tubes to evaluate their intergranular corrosion susceptibility. The conclusion was that the high intergranular corrosion susceptibility of the Super304H tubes might be induced by the unqualified match of carbon and niobium or the improper delivery heat treatment technology. It is therefore strongly recommended that more attention be paid to this novel material regarding its intergranular corrosion susceptibility and the chemical composition and delivery state heat treatment technology for standard specification of this material should be further investigated and optimized.
机译:新开发的Super304H奥氏体不锈钢因其优越的高温强度,良好的抗氧化性和抗蒸汽腐蚀性能而被广泛用于超超临界化石燃烧锅炉。但是它的高碳含量大大增加了其晶间腐蚀敏感性。最近,在华南地区安装的一台1000 MW超超临界化石燃料锅炉在水压测试中发生了严重的过热器泄漏事故。经过故障分析,发现由Super304H制成的过热器管受到晶间腐蚀引起的应力腐蚀开裂的侵蚀。晶间腐蚀的外部原因是管子在海边环境中裸露了几个月,内部原因是管子的晶间腐蚀敏感性很高。这引起了我们对该材料耐晶间腐蚀性能的关注,并通过选择不同批次的Super304H管进行了进一步的实验,以评估其耐晶间腐蚀性能。结论是:由于碳,铌配比不合格或输送热处理工艺不当,可能导致Super304H管的晶间腐蚀敏感性高。因此,强烈建议对这种新型材料的晶间腐蚀敏感性给予更多关注,并应进一步研究和优化该材料的标准规格的化学组成和输送状态热处理技术。

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