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退火工藝對釬具用鋼22Si2MnCrNi2MoA帶狀組織的影響

Influence of annealing on the banded structure of 22Si2MnCrNi2MoA drill steel

  • 摘要: 使用光學顯微鏡、掃描也鏡和能譜儀等研究了釬具用鋼22Si2MnCrNi2MoA動態連續冷卻相變規律和退火工藝優化,分析了冷卻速度對連續冷卻轉變曲線和相變組織的影響,探討了22Si2MnCrNi2MoA鋼帶狀組織成因及改善措施.22Si2MnCrNi2MoA鋼具有較高的淬透性,在形變后空冷即可得到貝氏體+馬氏體組織.在所選取的溫度和時間范圍內,710℃退火保溫5 h為最優的退火工藝,等溫退火并不能改善鋼中帶狀組織的成分不均.帶狀組織的形成是由于化學元素Si、Mn、Cr、Ni和Mo的偏聚引起的,提高橫截面內變形均勻程度對于改善棒材組織均勻性是有利的,但冶金過程成分偏析均質控制才是減輕或消除帶狀組織成分不均的關鍵.

     

    Abstract: 22Si2MnCrNi2MoA drill steel was tested by optical microscopy,scanning electron microscopy and energy dispersive spectroscopy to study its dynamic continuous cooling phase transformation law and annealing process optimization,analyze the effect of cooling rate on its continuous cooling transformation(CCT) curves and transformation microstructure,and find out the cause of banded structure formation and measures for quality improvement.It is shown that the steel has high hardenability,and a bainite and martensite duplex microstructure is obtained when the hot rolled material is cooled in air after deformation.The optimal annealing process is at 710℃for 5 h.The composition inhomogeneity of the banded structure in the steel cannot be eliminated by isothermal annealing.The banded structure is caused by the segregation of the alloy elements of Si,Mn,Cr,Ni and Mo,and can be weakened by improving the crosssection deformation uniformity of bars.However,the homogeneous distribution of alloy elements in the metallurgical process is the critical way to reduce or eliminate the composition inhomogeneity of the banded structure.

     

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