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含釩高強度船體結構鋼的連續冷卻轉變

Effect of finish rolling temperature on the continuous cooling transformation of V-alloyed high strength hull steel

  • 摘要: 利用熱模擬實驗機模擬了中板控制軋制工業生產工藝,測定了一種釩微合金化船體結構鋼經不同溫度多道次變形后的動態CCT曲線,討論了終軋溫度和冷卻速度對組織、γ/α相變及CCT曲線的影響.結果表明:隨終軋溫度的降低,實驗鋼的動態CCT曲線整體向左上方移動,獲得鐵素體+珠光體組織的冷卻速度范圍變寬;隨冷卻速度的增加,γ/α相變開始溫度Ar3逐漸降低,貝氏體相變開始溫度Bs以拋物線形式變化;鐵素體晶粒隨終軋溫度降低或冷速的增加而細化.

     

    Abstract: The dynamic continuous cooling transformation (CCT) diagrams of a kind of V-alloyed high strength hull steel were determined by the use of a thermo-simulating machine after multi-pass deformation designed to simulate the industrial controlled rolling procedures for the production of plates at different temperatures. The effects of finish rolling temperature and cooling rate on the microstructure, γ/α transformation and CCT diagrams of the hull steel were investigated. The results show that the dynamic CCT diagrams shift to left and upper, and the region of cooling rate to obtain ferrite and pearlite is widened with decreasing finish rolling temperature. With the increase of cooling rate, the onset of γ transformation (Ar3) is lowered gradually, and the bainite start temperature Bs changes in a parabolic way. As the finish rolling temperature decreases or the cooling rate increases, the grains of ferrite are refined.

     

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