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水冷銅模與砂模鑄造M2鋼顯微組織對比

Comparison between the microstructures of M2 steel cast by the water-cooled copper mould and the sand mould

  • 摘要: 采用實驗室25 kg高頻真空感應爐熔煉M2鋼,并用水冷銅模和砂模均澆鑄為橫截面100 mm×50 mm的M2鋼鑄錠,研究冷卻速度對M2鋼二次枝晶間距、滲透率、碳化物和晶粒尺寸及分布的影響.研究結果表明:M2鋼凝固過程中,快的冷卻速度能有效減小二次枝晶間距、滲透率、晶粒和網狀碳化物的尺寸,同時可以改善晶粒和網狀碳化物的分布和均勻性;砂模和水冷銅模M2鋼鑄錠的平均二次枝晶間距分別為42.5μm和21.6μm,平均冷卻速度為1.06 K·s-1和12.50 K·s-1,平均滲透率分別為0.13μm2和0.035μm2.快的冷卻速度能有效減輕中心碳偏析程度,砂模和水冷銅模模鑄的M2鋼鑄錠中心碳化物面積分數分別為0.46和0.30,且其較各自的平均值分別增大38.7%和2.2%;水冷銅模鑄錠平均晶粒尺寸(43.1μm)較砂模鑄錠的平均晶粒尺寸(72.6μm)減小約40.7%,鑄錠中心晶粒尺寸減小43.2%,且水冷銅模鑄錠的晶粒尺寸較砂模鑄錠均勻.文中獲得了M2鋼凝固過程中晶粒尺寸與冷卻速度的關系式.

     

    Abstract: M2 steel was melted by a 25 kg high-frequency vacuum induction furnace and was cast to ingots with a cross section of 100 mm×50 mm by the water-cooled copper mould and the sand mould.The effects of cooling rate on the ingot's secondary dendrite arm spacing(λ2),permeability,and size and distribution of grains and carbides were studied.The results show that fast cooling rate can effectively decrease the λ2,permeability and size of grains and network carbides,and improve the distribution and uniformity of network carbides and grains during solidification.The λ2 values of ingots cast with the sand mould and the water-cooled copper mould are 42.5 μm and 21.6 μm,the cooling rate is 1.06 K·s-1 and 12.5 K·s-1,and the permeability is 1.3×10-1 μm2 and 3.5×10-2 μm2,respectively.Fast cooling rate can effectively reduce the center carbon segregation degree.The area fraction of carbides is 0.46 and 0.30 respectively at the center of ingots cast with the sand mould and the water-cooled copper mould,and increases by 38.7%and 2.2% respectively compared with their average values.The average grain size of ingots cast with the water-cooled copper mould and the sand mould is 41.3 μm and 72.6 μm,respectively.Comparing with the sand mould ingot,the grain size at the center of the water-cooled copper mould ingot reduces by 43.2%,and the grain size of the water-cooled copper ingot is more uniform.The relationship between grain size and cooling rate was presented in this paper.

     

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