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低碳含鈮鋼粗大奧氏體的靜態再結晶

Static recrystailization in low-carbon niobium-microalloyed steels with coarse austenite

  • 摘要: 利用Gleeble1500熱模擬機研究了Nb質量分數0.089%的高溫熱機械軋制鋼(4# Nb鋼)在粗大奧氏體晶粒條件下的靜態再結晶規律.作為對比,同時研究了一種鈮質量分數0.049%的低碳含鈮鋼(2# Nb鋼)的靜態再結晶規律.實驗結果表明:4# Nb鋼的靜態再結晶動力學過程比2# Nb鋼慢,在高溫時差異較小;隨著形變溫度的降低,4# Nb鋼的靜態再結晶動力學被極大地延遲.根據實驗數據建立了靜態再結晶模型,該模型對軋制工藝的制定有一定的指導意義.

     

    Abstract: The static recrystallization behavior of a high temperature processing (HTP) steel containing 0.08% Nb (4#Nb steel) with coarse austenite was investigated by using a thermo-mechanical simulator Gleeble 1500. A low carbon steel containing 0. 049% Nb (2# Nb steel) was also studied as a comparison. The results indicate that the static recrystallization kinetics process of 4# Nb steel is slightly slower than that of 2# Nb steel at high deformation temperature. The recrystallization of 4# Nb steel is greatly retarded with decreasing deformation temperature. According to experimental data, a mathematical model of static recrystaUization was developed, which can provide theoretical guidance for designing the industrial rolling procedure.

     

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