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Research and Improvement on structure stability and corrosion resistance of nickel-base superalloy INCONEL alloy 740

机译:镍基高温合金INCONEL 740的结构稳定性和耐蚀性的研究与改进

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INCONEL alloy 740 is a newly developed Ni-Cr-Co-Mo-Nb-Ti-Al superalloy in the application to ultra-supercritical boilers with steam temperatures up to 700 deg C. By means of scanning electron microscopy (SEM), transmission electron microscopy (TEM), X-ray diffraction (XRD), micro-chemical phase analyses, and corrosion-resisting test, this paper investigates the structure stability of the alloy at elevated temperature and concentrates on coal ash corrosion performance of the alloy under the simulated coal ash/ flue gas condition. Experimental results show that the most important structure instabilities of the alloy during prolonged aging are gamma' coarsening, gamma' to eta transformation and G phase formation at grain boundary. The performance of corrosion resistance of the alloy would meet the requirement of ultra-supercritical boiler tubes. The phase computation by means of Thermo-Calc has been adopted in chemical composition modification for structure stability improvement. Two suggested new modified alloys in adjustment of the Al and Ti contents and in control of Si level, and also in maintenance of Cr content of the alloy were designed and melted for experimental investigation. These two modified alloys exhibit more stable microstructure during 760 deg C long time aging.
机译:INCONEL 740合金是一种新开发的Ni-Cr-Co-Mo-Nb-Ti-Al超级合金,适用于蒸汽温度高达700摄氏度的超超临界锅炉。通过扫描电子显微镜(SEM),透射电子显微镜(TEM),X射线衍射(XRD),微观化学相分析和耐腐蚀试验,本文研究了合金在高温下的结构稳定性,并重点研究了合金在模拟下的煤灰腐蚀性能。粉煤灰/烟气条件。实验结果表明,合金在长时间时效过程中最重要的结构失稳是γ'粗化,γ'到eta转变和在晶界形成G相。该合金的耐蚀性能满足超超临界锅炉管的要求。在化学成分修改中已经采用了通过Thermo-Calc进行的相计算来提高结构稳定性。设计并熔化了两种建议的新型改性合金,用于调节Al和Ti含量以及控制Si含量以及保持Cr含量,以进行实验研究。这两种改性合金在760摄氏度的长时间时效过程中表现出更稳定的微观结构。

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