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A study of shell growth irregularities in continuously cast 310S stainless steel

机译:连铸310S不锈钢的壳体生长规律研究。

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摘要

Growth irregularities in continuous casting are believed to be associated with crack formation and breakouts. Differential thermal analysis on 310S stainless steel samples indicated primary precipitations of both austenite and ferrite during solidification. In tensile tests on solidifying samples, abrupt shrinkages in volume were detected in the peritectic range of temperatures. Micrographic and microsegregation analysis on samples extracted from a breakout shell revealed high ratios of primary-precipitated austenite in the thick sections of the shell, and high ratios of primary-precipitated ferrite in the thin sections. Alternating precipitations of austenite and ferrite are proposed to occur during solidification. Regions of the shell with high ratios of primary austenite remain in contact with the mould and exhibit high growth rates, whereas regions with high ratios of primary ferrite shrink in volume due to the ferrite to austenite transformation, which results in the formation of air gaps between the shell and the mould and reductions in growth rate.
机译:据信连铸中的生长不规则与裂纹形成和破裂有关。对310S不锈钢样品进行的差热分析表明,凝固过程中奥氏体和铁素体均发生了初次析出。在凝固样品的拉伸试验中,在包晶温度范围内检测到体积突然收缩。从破裂的外壳中提取的样品的显微图像和微观偏析分析显示,在外壳的厚部分中高比例的初生奥氏体在薄壁部分中高比例。建议在凝固过程中发生奥氏体和铁素体的交替沉淀。具有高原始奥氏体比例的壳体区域保持与模具接触并显示出高生长速率,而具有高原始铁素体比例的区域由于铁素体向奥氏体的转变而体积缩小,从而导致在两者之间形成气隙。外壳和模具,增长率降低。

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  • 来源
    《Ironmaking & Steelmaking》 |2009年第7期|521-528|共8页
  • 作者单位

    Materials Processing, Royal Institute of Technology (KTH), Brinellv?gen 23, S-10044 Stockholm, Sweden, Email: hanin@matpr.kth.se;

    Materials Processing, Royal Institute of Technology (KTH), Brinellv?gen 23, S-10044 Stockholm, Sweden;

    Materials Processing, Royal Institute of Technology (KTH), Brinellv?gen 23, S-10044 Stockholm, Sweden;

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