Page 55 - 机械工程材料2025年第三期
P. 55

徐晓龙,等:道间温度与焊后热处理冷却速率对P91钢焊缝金属冲击韧性与耐腐蚀性能的影响


                   131-135.                                          ZHANG Q B,NIU J,ZHAO P F,et al. Influence of
                [9] 杜吉康,詹新伟,王树青. U75V钢轨闪光焊焊后热处                       preheating  temperature  on  cold  cracking  sensitivity  of

                   理冷却工艺优化研究[J]. 高速铁路新材料,2022,1(6):                  12Cr10Co3W2Mo  heat  resistant  steel[J]. Transactions
                   47-52.                                            of the China Welding Institution,2015,36(4):87-91.
                   DU  J  K,ZHAN  X  W,WANG  S  Q.  Research  on     [15] FRANCIS J A,CANTIN G M D,MAZUR W,et al.

                   optimization  of  cooling  process  in  the  post-weld   Effects  of  weld  preheat  temperature  and  heat  input  on
                   heat  treatment  of  U75V  rails  flash  butt  welding   type IV failure[J]. Science and Technology of Welding
                   joints[J]. Advanced Materials of High Speed Railway,  and Joining,2009,14(5):436-442.

                   2022,1(6):47-52.                               [16] SETHI A K. Studies on hard surfacing of structural steel
                [10] 谢少辉,尹士科. 高强度焊缝焊后热处理参数的确                         by  gas  thermal  spraying  process[J]. Materials  Today:

                   定[J]. 焊接技术,2004,33(4):18-19.                      Proceedings,2020,21:1436-1440.

                   XIE  S  H,YIN  S  K.  Determination  of  postweld  heat     [17] 李文清,马景平,曹睿,等. P91钢焊缝金属碳化物聚集
                   treatment parameters of high strength weld[J]. Welding   程度的差异对焊缝金属冲击韧性的影响[J]. 材料导
                   Technology,2004,33(4):18-19.                      报,2024,38(20):202-208.
                [11] WANG  Y  Y,KANNAN  R,LI  L  J.  Characterization       LI  W  Q,MA  J  P,CAO  R,et  al.  Effect  of  different

                   of  as-welded  microstructure  of  heat-affected  zone  in   degree  of  carbide  aggregation  in  P91  steel  weld  metal
                   modified 9Cr-1Mo-V-Nb steel weldment[J]. Materials   on  the  impact  toughness  of  weld  metal[J]. Materials
                   Characterization,2016,118:225-234.                Reports,2024,38(20):202-208.
                [12] ŽUŽEK  B,PODGORNIK  B,KAFEXHIU  F.           [18] 曹飞杨,谢敬佩,王淼辉,等. 喷射成形H13钢的耐腐


                   Development of microstructure and creep resistance of a   蚀行为[J]. 材料热处理学报,2016,37(1):163-168.
                   martensitic creep resistant steel[J]. International Journal       CAO  F  Y,XIE  J  P,WANG  M  H,et  al.  Corrosion
                   of  Microstructure  and  Materials  Properties,2017,12  behavior of sprayed-formed H13 steel[J]. Transactions
                  (3/4):301.                                         of Materials and Heat Treatment,2016,37(1):163-168.
                [13] YU X,BABU S S,TERASAKI H,et al. Correlation of     [19] 缪乐德,张毅,杨建强,等. 不同热处理状态下镍基耐


                   precipitate  stability  to  increased  creep  resistance  of  Cr-  蚀合金析出相的定性定量分析[J]. 冶金分析,2015,
                   Mo steel welds[J]. Acta Materialia,2013,61(6):2194-  35(1):6-12.
                   2206.                                             MIAO L D,ZHANG Y,YANG J Q,et al. Qualitative

                [14] 张群兵,牛靖,赵鹏飞,等. 预热温度对12Cr10Co3W2                  and quantitative analysis of precipitate phases in nickel-
                   Mo耐热钢焊接冷裂纹敏感性的影响[J]. 焊接学报,                        based corrosion resistant alloys with different isothermal
                   2015,36(4):87-91.                                 situation[J]. Metallurgical Analysis,2015,35(1):6-12.

































                                                                                                           47
   50   51   52   53   54   55   56   57   58   59   60