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Effect of carbon on microstructure and mechanical properties of HR3C type heat resistant steels

机译:碳对HR3C型耐热钢组织和力学性能的影响

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摘要

The modified HR3C austenitic heat-resistant steels for applications of ultra-supercritical (USC) power plants were developed and investigated. As the C content breaks through the limitation of the HR3C composition range (>0.1 wt%), the evolution of carbides and mechanical properties after isothermal aging at 700 °C have not been understood. In this study, two modified HR3C with different C content were studied by tensile test and Charpy impact test at room temperature after long-term aging up to 10,000 h. The M_(23)C_6 carbide is rapidly precipitated at the interface (GBs, TBs or NbC/γ), and these carbides at grain boundaries (GBs) are gradually changed from a continuous distribution to a semi-continuous distribution, then finally agglomerate and coarsen near the GBs. Moreover, a new morphology type lamellar M_(23)C_6 carbide forms in the grain. The effect of lamellar carbides on mechanical properties at room temperature (RT) is not obvious because the strength of GB is rapidly weakened. Besides, the Larson-Miller parameter was obtained and the creep strength of the modified HR3C was extrapolated, by conducting creep rupture experiments on un-aged sample. The creep tests reveal that the rupture lives decrease with increasing C content. Lamellar carbides are precipitated and weaken the strength of grain during high temperature creep.
机译:开发并研究了用于超超临界(USC)发电厂应用的改性的HR3C奥氏体耐热钢。由于C含量通过HR3C组成范围(> 0.1wt%)的限制而破裂,因此尚未理解在700℃下等温老化后的碳化物和机械性能的演变。在该研究中,通过在长期老化后的长期老化后,通过拉伸试验和夏比冲击试验研究了两种具有不同C含量的修饰的HR3C,高达10,000小时。在界面(GBS,TBS或NBC /γ)处快速沉淀M_(23)C_6碳化物,并且在晶界(GBS)处的这些碳化物从连续分布逐渐改变为半连续分布,然后最终聚集和在GB附近腐烂。此外,在晶粒中形成了一种新的形态型层状M_(23)C_6碳化物。层状碳化物对室温(RT)在机械性能下的影响是不明显的,因为GB的强度迅速削弱。此外,通过在未老化样品上进行蠕变破裂实验,获得了Larson-Miller参数并且改性HR3C的蠕变强度推断。蠕变试验表明,随着C含量的增加,破裂的生命降低。层状碳化物沉淀,耐高温蠕变期间粒度的强度。

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  • 来源
    《Materials Science and Engineering》 |2020年第may15期|138943.1-138943.14|共14页
  • 作者单位

    R&D Center Xi'an Thermal Power Research Institute Co. Ltd. Xingqing Road 136 Xi'an Shaanxi 710032 China School of Materials Science and Engineering Northeastern University Shenyang Liaoning 110819 China High Temperature Material Institute Central Iron and Steel Research Institute Beijing 100081 China;

    R&D Center Xi'an Thermal Power Research Institute Co. Ltd. Xingqing Road 136 Xi'an Shaanxi 710032 China;

    R&D Center Xi'an Thermal Power Research Institute Co. Ltd. Xingqing Road 136 Xi'an Shaanxi 710032 China;

    R&D Center Xi'an Thermal Power Research Institute Co. Ltd. Xingqing Road 136 Xi'an Shaanxi 710032 China;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Ultra-supercritical power plant; HR3C; Long-term aging; Lamellar carbide; Mechanical properties; Creep;

    机译:超超临界电厂;HR3C;长期老化;板状碳化物;机械性能;蠕动;

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