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冷却速率对M2高速工具钢铸锭凝固组织的影响

Effect of Cooling Rate on Solidification Structure of M2 High Speed Tool Steel Ingot

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【作者】 赵志刚颜慧成仇圣桃朱荣

【Author】 Zhao Zhigang;Yan Huicheng;Qiu Shengtao;Zhurong;School of Metallurgical and Ecological Engineering,University of Science and Technology;National Engineering Research Center of Continuous Casting Technology,Central Iron and Steel Research Institute;

【机构】 北京科技大学冶金与生态工程学院钢铁研究总院连铸技术国家工程研究中心

【摘要】 试验M2钢(/%:0.81C,0.31Si,0.33Mn,4.01Cr,4.57Mo,5.71W,1.77V)由实验室25 kg高频真空感应炉熔炼,并浇铸成横截面50 mm×100 mmmn钢锭。研究了水冷铜模和铸铁模浇铸的M2钢的低倍组织、晶粒尺寸和碳化物分布。结果表明,快速冷却可有效控制和消除M2钢铸锭中的柱状晶,随着冷却速率增大,M2钢铸锭部分气泡上浮不完全,但中心缩孔显著减小,晶粒更细小且分布更均匀,碳化物更加弥散且细小;铸铁模锭边缘和中心部分的晶粒尺寸分别为40~57μ用和55~62μm,而水冷铜模锭边缘和中心部分的晶粒尺寸分别为30~40μm和50μm。

【Abstract】 The test M2 steel(/%:0.81C,0.31Si,0.33Mn,4.01Cr,4.57Mo,5.71W,1.77V) is melted by a 25kg high-frequency induction furnace and cast to cross section 50 mm x 100 mm ingots in laboratory.The macro-structure,grain size and distribution of carbides of M2 steel ingot casting by water-cooling copper mould and cast iron mould are studied.Results show that higher cooling rate is available to control and eliminate the columnar crystal in ingot of M2 steel;with increasing the cooling rate the partial bubbles in M2 steel ingot float off incompletely but the central shrinkage of ingot decreases significantly,the grains are fine and uniform distribution,and the carbides in steel are more dispersed and fine;the grain size at edge and center of ingot with cast iron mould process are respectively 40 ~ 57 μm and 55 ~ 62 μm and that with water-cooling copper mould process are respectively 30 ~ 40 urn and 50 μm.

  • 【分类号】TF771
  • 【被引频次】15
  • 【下载频次】233
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