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王光乐,等:高温应力下TP347HFG钢的组织


                 (3)持久试样中弥散分布的M 23 C 6 和NbC导致                     [8]  NAKAI  M,NAGAI  K,MURATA  Y,et  al.
              材料发生析出强化,提高了硬度;但随着试验时间的                                Improvement in steam oxidation resistance of Fe-10%Cr-
              延长,持久断裂试样的硬度降低,老化明显。                                   0.08%C  steel  by  suppressing  hydrogen  dissolution[J].
                                                                     Corrosion Science,2006,48(11):3869-3885.
              参考文献:                                               [9]  郭岩,贾建民,侯淑芳,等.国产TP347HFG钢的水
                                                                     蒸汽氧化行为研究[J].腐蚀科学与防护技术,2011,
                [1]  SHINGLEDECKER J P,EVANS N D.Creep-rupture       23(6):505-509.
                   performance  of  0.07C-23Cr-45Ni-6W-Ti,Nb  austenitic     [10]  LEPINGLE  V,LOUIS  G,ALLUÉ  D,et  al.Steam
                   alloy (HR6W) tubes[J].International Journal of Pressure   oxidation  resistance  of  new  12%Cr  steels:comparison
                   Vessels and Piping,2010,87(6):345-350.            with  some  other  ferritic  steels[J].Corrosion  Science,
                [2]  郭岩, 周荣灿,侯淑芳,等.617合金760 ℃时效组织结构                  2008,50(4):1011-1019.
                   及力学性能分析[J].中国电机工程学报,2010,30(26):               [11]  ENNIS  P  J,QUADAKKERS  W  J.Mechanisms  of
                   86-89.                                            steam  oxidation  in  high  strength  martensitic  steels[J].

                [3]  SCHLEGEL  S,HOPKINS  S,YOUNG  E,et  al.         International  Journal  of  Pressure  Vessels  and  Piping,
                   Precipitate  redistribution  during  creep  of  alloy  617[J].  2007,84(1/2):75-81.

                   Metallurgical  and  Materials  Transactions  A,2009,    [12]  VISWANATHAN  R,COLEMAN  K,RAO  U.
                   40(12):2812-2823.                                 Materials  for  ultra-supercritical  coal-fired  power  plant
                [4]  VISWANATHAN  R,SARVER  J,TANZOSH  J  M.         boilers[J].International Journal of Pressure Vessels and
                   Boiler materials for ultra-supercritical coal power plants-  Piping,2006,83(11/12):778-783.
                   steamside oxidation[J].Journal of Materials Engineering     [13]  TRINDADE V B,KRUPP U,HANJARI B Z,et al.

                   and Performance,2006,15(3):255-274.               Effect  of  alloy  grain  size  on  the  high-temperature
                [5]  李昱伟,张骁勇,周勇,等.高温锅炉管T22/TP347H                    oxidation  behavior  of  the  austenitic  steel  TP  347[J].
                   异种钢焊接接头早期失效原因[J].理化检验(物理分                         Materials Research,2005,8(4):371-375.
                   册),2023,59(1):68-71.                           [14]  PERALDI R,PINT B A.Effect of Cr and Ni contents
                [6]  JIANMIN  J,MONTGOMERY  M,LARSEN  O  H,          on the oxidation behavior of ferritic and austenitic model
                   et  al.Investigation  on  steam  oxidation  behaviour  of   alloys  in  air  with  water  vapor[J].Oxidation  of  Metals,
                   TP347H FG.Part 1:exposure at 256 bar[J].Materials   2004,61(5):463-483.
                   and Corrosion,2005,56(7):459-467.              [15]  LI X G,HE J W.Effect of shot blasting on oxidation
                [7]  JIANMIN  J,MONTGOMERY  M,LARSEN  O  H,          behavior of TP304H steel at 610‒770 ℃ in water vapor[J].
                   et  al.Investigation  of  steam  oxidation  behaviour  of   Materials Letters,2006,60(3):339-344.
                   TP347H FG.Part 2:exposure at 91 bar[J].Materials     [16]  宋涛,王志武.高温服役后TP347HFG钢的组织与性
                   and Corrosion,2005,56(8):542-549.                 能[J].金属热处理,2020,45(4):60-62.






























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