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低碳微合金鋼中TixO-MnS型復合夾雜對焊接熱影響區微觀組織相變的影響

Effects of TixO-MnS complex inclusions on the microstructure phase transformation of heat affected zone in the welding of low carbon microalloyed steels

  • 摘要: 對比分析了兩種低碳微合金鋼中夾雜物對焊接熱影響區組織相變的影響.對實驗鋼中夾雜物的分布和尺寸進行觀察并在透射電鏡下分析了夾雜物的選區衍射斑圖樣.采用熱膨脹法結合金相分析建立了實驗鋼的連續冷卻轉變曲線(CCT曲線)和等溫轉變曲線(TTT曲線).研究發現,Ti脫氧鋼中夾雜物以尺寸小于3μm的TixO-MnS型球狀復合夾雜為主,其中TixO核心有兩種類型(Ti2O3和Ti3O5).這類夾雜物具有誘導晶內針狀鐵素體形核的能力,針狀鐵素體優先在TixO-MnS型復合夾雜界面上形核,從而導致Ti脫氧鋼相對于Al脫氧鋼的貝氏體相變開始溫度升高,相變時間也明顯提前.

     

    Abstract: The effects of inclusions in two kinds of low carbon micro-alloy steels on the phase transformation of welding heat affected zone were analyzed and compared.Inclusion distribution and size were observed and the selected area diffraction patterns(SADP) of inclusions were analyzed by transmission electron microscopy(TEM).The continuous cooling transformation curves(CCT) and isothermal cooling transformation curves(TTT) of the test steels were built by thermal expansion method and metallographic analysis.It is shown that the main inclusions in Ti-deoxidized steel are globular TixO-MnS compounds with the size smaller than 3μm,and the TixO cores have two types,Ti2O3 and Ti3O5.These inclusions have the effect of inducing the nucleation of intragranular acicular ferrite.The acicular ferrite prefers to nucleate on the surface of TixO-MnS compounds in Ti-deoxidized steel,therefore,compared with that in Al-deoxidized steel,the bainite transformation temperature is increased and the transformation time is advanced obviously.

     

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