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冷卻速度對含鈮、鈦微合金鋼鑄坯表層組織結構的影響

Effect of cooling rate on the slab surface microstructure of microalloyed steel containing Nb and Ti

  • 摘要: 鑄坯出結晶器后的冷卻速度是影響和決定鑄坯表層組織結構(0~5 mm)及第2相析出物分布的關鍵因素.在開發重熔凝固冷卻實驗裝置的基礎上,模擬鑄坯在垂直段的凝固冷卻條件,研究不同冷卻速度對鑄坯表層組織與第2相析出物分布的影響.研究表明,在0.8 m·min-1拉速下,以5℃.s-1的冷卻速度,使鑄坯在出結晶器后表面溫度下降到A3溫度以下,得到的表層組織均勻,晶界無膜狀先共析鐵素體,微合金元素析出物在晶內分布均勻,有利于提高鑄坯熱塑性及降低裂紋敏感性.

     

    Abstract: Cooling rate is a key factor which affects the surface(0 to 5 mm) microstructure of a slab and the distribution of the second phase precipitates after the slab leaves the mould.In order to simulate the thermal cycle when a slab is drawn to the vertical segment,a remelting and solidification cooling experimental device was designed.The influences of cooling rate on the surface microstructure of a slab and the distribution of the second phase precipitates were investigated.It is shown that when the slab is drawninto the vertical segment at a speed of 0.8 m· min-1 and the slab surface is cooled to less than the A3 transformation temperature by intensive cooling at a cooling rate of 5℃·s-1, the surface microstructure of the slab is uniform, the second phase precipitates containing Nb and Ti are well-distributed, and film-like proeutectoid ferrite does not precipitate along the austenite grain boundaries. These help to improve the hot ductility and to alleviate the cracking susceptibility of the slab.

     

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