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研究热处理对AISI 347H不锈钢耐腐蚀性的影响。

Study the Effect of Heat Treatment on the Corrosion Resistance of AISI 347H Stainless Steel.

作者信息

Peng Yunyan, Zhao Bo, Yang Jianhua, Bai Fan, Qian Hongchang, Shi Bingxiao, Wang Luntao

机构信息

China Special Equipment Inspection and Research Institute, Beijing 100029, China.

State Key Laboratory of Low-Carbon Thermal Power Generation Technology and Equipment, Beijing 102209, China.

出版信息

Materials (Basel). 2025 Jul 25;18(15):3486. doi: 10.3390/ma18153486.

Abstract

AISI 347H stainless steel is widely used in high-temperature environments due to its excellent creep strength and oxidation resistance; however, its corrosion performance remains highly sensitive to thermal oxidation, and the effects of thermal history on its passive film stability are not yet fully understood. This study addresses this knowledge gap by systematically investigating the influence of solution treatment on the corrosion and oxidation resistance of AISI 347H stainless steel. The specimens were subjected to solution heat treatment at 1050 °C, followed by air cooling, and then evaluated through electrochemical testing, high-temperature oxidation experiments at 550 °C, and multiscale surface characterization techniques. The solution treatment refined the austenitic microstructure by dissolving coarse Nb-rich precipitates, as confirmed by SEM and EBSD, and improved passive film integrity. The stabilizing effect of Nb also played a critical role in suppressing sensitization, thereby enhancing resistance to intergranular attack. Electrochemical measurements and EIS analysis revealed a lower corrosion current density and higher charge transfer resistance in the treated samples, indicating enhanced passivation behavior. ToF-SIMS depth profiling and oxide thickness analysis confirmed a slower parabolic oxide growth rate and reduced oxidation rate constant in the solution-treated condition. At 550 °C, oxidation was suppressed by the formation of compact, Cr-rich scales with dual-distributed Nb oxides, effectively limiting diffusion pathways and stabilizing the protective layer. These findings demonstrate that solution treatment is an effective strategy to improve the long-term corrosion and oxidation performance of AISI 347H stainless steel in harsh service environments.

摘要

AISI 347H不锈钢因其出色的蠕变强度和抗氧化性而广泛应用于高温环境;然而,其腐蚀性能对热氧化仍高度敏感,且热历史对其钝化膜稳定性的影响尚未完全了解。本研究通过系统研究固溶处理对AISI 347H不锈钢耐腐蚀和抗氧化性的影响,填补了这一知识空白。对试样进行1050℃固溶热处理,随后空冷,然后通过电化学测试、550℃高温氧化实验和多尺度表面表征技术进行评估。如扫描电子显微镜(SEM)和电子背散射衍射(EBSD)所证实,固溶处理通过溶解粗大的富铌析出相细化了奥氏体微观结构,并改善了钝化膜完整性。铌的稳定作用在抑制敏化方面也起到了关键作用,从而增强了抗晶间腐蚀能力。电化学测量和电化学阻抗谱(EIS)分析表明,处理后的样品具有较低的腐蚀电流密度和较高的电荷转移电阻,表明钝化行为增强。飞行时间二次离子质谱(ToF-SIMS)深度剖析和氧化物厚度分析证实,在固溶处理条件下,抛物线形氧化物生长速率较慢,氧化速率常数降低。在550℃时,通过形成具有双分布铌氧化物的致密富铬氧化皮抑制了氧化,有效限制了扩散路径并稳定了保护层。这些发现表明,固溶处理是提高AISI 347H不锈钢在恶劣服役环境中长期耐腐蚀和抗氧化性能的有效策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/45e2/12348006/e43c9b3d1d4b/materials-18-03486-g001.jpg

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