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高压滑动处理的S304H奥氏体钢的抗蠕变性

Creep Resistance of S304H Austenitic Steel Processed by High-Pressure Sliding.

作者信息

Kral Petr, Dvorak Jiri, Sklenicka Vaclav, Horita Zenji, Takizawa Yoichi, Tang Yongpeng, Kral Lubomir, Kvapilova Marie, Roupcová Pavla, Horvath Jakub

机构信息

Institute of Physics of Materials, Czech Academy of Sciences, Zizkova 22, 616 00 Brno, Czech Republic.

Kyushu Institute of Technology, Kitakyushu 804-8550, Japan.

出版信息

Materials (Basel). 2022 Jan 3;15(1):331. doi: 10.3390/ma15010331.

Abstract

Sheets of coarse-grained S304H austenitic steel were processed by high-pressure sliding (HPS) at room temperature and a ultrafine-grained microstructure with a mean grain size of about 0.14 µm was prepared. The microstructure changes and creep behavior of coarse-grained and HPS-processed steel were investigated at 500-700 °C under the application of different loads. It was found that the processing of S304H steel led to a significant improvement in creep strength at 500 °C. However, a further increase in creep temperature to 600 °C and 700 °C led to the deterioration of creep behavior of HPS-processed steel. The microstructure results suggest that the creep behavior of HPS-processed steel is associated with the thermal stability of the SPD-processed microstructure. The recrystallization, grain growth, the coarsening of precipitates led to a reduction in creep strength of the HPS-processed state. It was also observed that in the HPS-processed microstructure the fast formation of σ-phase occurs. The σ-phase was already formed during slight grain coarsening at 600 °C and its formation was enhanced after recrystallization at 700 °C.

摘要

通过室温高压滑动(HPS)工艺对粗晶S304H奥氏体钢薄板进行加工,制备出了平均晶粒尺寸约为0.14 µm的超细晶组织。研究了粗晶和经HPS处理的钢在500 - 700 °C、不同载荷作用下的组织变化和蠕变行为。结果发现,对S304H钢进行加工后,其在500 °C时的蠕变强度有显著提高。然而,当蠕变温度进一步升高到600 °C和700 °C时,经HPS处理的钢的蠕变行为恶化。微观组织研究结果表明,经HPS处理的钢的蠕变行为与严重塑性变形(SPD)处理后的微观组织的热稳定性有关。再结晶、晶粒长大以及析出相粗化导致了经HPS处理状态的蠕变强度降低。还观察到,在经HPS处理的微观组织中,σ相快速形成。在600 °C轻微晶粒粗化过程中σ相就已形成,而在700 °C再结晶后其形成得到增强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b30a/8746042/520fa6bc5295/materials-15-00331-g001.jpg

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