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Creep and LCF Behaviors of Newly Developed Advanced Heat Resistant Austenitic Stainless Steel for A-USC

机译:新开发的用于A-USC的高级耐热奥氏体不锈钢的蠕变和LCF行为

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摘要

Austenitic stainless steel grade UNS S31035 (Sandvik Sanicro® 25) has been developed for use in super-heaters and reheaters in the next generation of A-USC power plants. This new grade shows very good resistances to steam oxidation and hot corrosion, and higher creep rupture strength than other austenitic stainless steels available today. This makes it an interesting alternative for super-heaters and reheaters in future high-efficient coal fired boilers. This paper will mainly focus on the study of the creep and LCF behavior of the material at temperatures from 600 °C to 750 °C by using TEM and ECCI. The mechanisms at different temperatures and loading conditions have been identified. The interactions between dislocations and precipitates and their contribution to the creep rupture strength have been discussed. In this paper, different models have been used to evaluate the long-term creep behavior of the grade. A creep rupture strength near 100 MPa at 700 °C for 100 000 h has been predicted.
机译:奥氏体不锈钢等级UNS S31035(SandvikSanicro®25)已开发用于下一代A-USC电厂的过热器和再热器。与当今的其他奥氏体不锈钢相比,这种新牌号具有极好的抗蒸汽氧化和热腐蚀性能,并且具有更高的蠕变断裂强度。这使得它成为未来高效燃煤锅炉中过热器和再热器的有趣替代品。本文将主要通过TEM和ECCI研究材料在600°C至750°C温度下的蠕变和LCF行为。已经确定了在不同温度和负载条件下的机理。讨论了位错与析出物之间的相互作用及其对蠕变断裂强度的影响。在本文中,已使用不同的模型来评估坡度的长期蠕变行为。预计在700°C的条件下100 000 h时的蠕变断裂强度接近100 MPa。

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