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650℃長期時效過程中Super304H耐熱不銹鋼組織的演變

Microstructural evolution of heat-resistant steel Super304H during 650 ℃ long term aging

  • 摘要: 對600℃超超臨界電站鍋爐過熱器/再熱器用Super304H耐熱不銹鋼的長期組織穩定性進行了研究.將Super304H管材經650℃、104h長期時效后,用掃描電鏡、透射電鏡和原子層析技術綜合分析了Super304H中析出相的行為,包括相析出初期的原子聚集,析出相的本質、成分、形態以及尺寸大小和分布.結果表明,Super304H中主要析出相為富Cu相、MX和M23C6.隨時效時間的延長,M23C6顆粒很快粗化,特別是在晶界處逐漸由顆粒狀長大成連續狀,而減弱了應有的強化效應;晶內彌散析出,尺寸為150nm左右的MX相數量明顯增多,特別是尺寸細小(3~35nm)的富銅相,均勻彌散分布.說明Su-per304H中起主要強化作用的是富銅相,其次是MX相和一部分M23C6碳化物.

     

    Abstract: The long-term structure stability of heat-resistant steel Super304H, which is used as superheater/reheater tubes for ultra-supercritical power plant boilers, was studied by means of SEM, TEM and 3DAP (three-dimensional atom probe). The results show that Cu-rich phase, MX and M23C6 are the main precipitates in Super304H steel. With increasing aging time, M23C6 carbide coarsens quickly and its morphology changes from separate particles to continuous precipitating at grain boundaries. The number of MX increases with increasing aging time and its average size is about 150 nm. Cu-rich phase dispersive particles precipitate in grains and their size keeps in the range of 3 to 35 nm. It is indicated that most of the strengthening effect in Super304H attributes to Cu-rich phase, with the complement of MX and partially M23C6 carbide.

     

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