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30CrNi3MoV低合金超高强钢中的马氏体相变 被引量:10

Martensitic transformation in the 30CrNi3MoV low-alloy ultra-high strength steel
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摘要 通过对马氏体的显微组织进行分析,并结合线膨胀试验得到的相变动力学信息研究了30CrNi3MoV低合金超高强钢中的马氏体相变特征.结果表明:淬火冷却30CrNi3MoV钢的相变产物包括低碳板条状和高碳针状两种马氏体形态,两者的形成在动力学曲线中截然分开.板条马氏体形成于Ms以下的较高温(310℃~260℃),相变过程中发生了碳的重新分配,造成富碳奥氏体微区的形成;高碳针状马氏体形成于Ms以下的较低温(260℃~170℃),由富碳奥氏体微区转变而成.板条马氏体形成速率远高于针状马氏体. Martensitic phase transformation characteristics in the 30CrNi3MoV low-alloy ultra-high strength steel were investigated by means of microstructure observation and dilatometric measurements. The results showed that the transformation products in the quenched 30CrNi3MoV steel were two kinds of martensite with different morphologies, lath martensite and acicular martensite, formation of which clearly separate each other in transformation dynamics curves. Lath martensites form in the relatively high temperature range (310℃ ~ 260℃ ) below the Ms, during which diffusion of carbon atoms occurred and resulted into carbonrich austenite micro regions around martensite lath bunches. Acicular martensites form in the relatively low temperature range (260℃ ~ 170℃ ) below the Ms, which are transformed from the carbon-rich austenite micro regions retained after the formation of lath martensites. Transformation rate of the lath martensite is obviously higher than that of the acicular martensite.
出处 《材料科学与工艺》 EI CAS CSCD 北大核心 2012年第5期138-142,共5页 Materials Science and Technology
基金 国家自然科学基金(51204121) 国家自然科学基金钢铁联合基金(50834011) 中国博士后科学基金(20110490774)
关键词 低合金超高强钢 马氏体 相变速率 MS low-alloy ultra-high strength steel martensite transformation rate Ms temperature
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  • 1Kasonde Maweja,Waldo Stumpf.The design of advanced performance high strength low-carbon martensitic armour steels,Part 1.Mechanical property considerations[J].Mater Sci Eng A,2008,485(25):140-153.
  • 2Sankaran S,Subramanya Sarma V,Kaushik V,et al.Thermomechanical processing and characterisation of multi-phase microstructures in a V-bearing medium carbon micro-alloyed steel[J].Journal of Materials Processing Technology,2003,139:642-647
  • 3Andrzej K L.Mechanical properties and microstructure of ULCB steels affected by thermomechanical rolling,quenching and tempering[J].Journal of Materials Processing Technology,2000,106:212-218.
  • 4Kasonde M,Waldo Stumpf.Fracture and ballistic-induced phase transformation in tempered martensitic low-carbon armour steels[J].Materials Science and Engineering,2006,A 432:158-169.
  • 5林慧国 傅代直.钢的奥氏体转变曲线[M].北京:机械工业出版社,1988.69.
  • 6Saeglitz M,KraussG.Deformation,fracture,and mechanical properties of low-temperature-tempered martensite in SAE 43xx steels[J].Metallurgical and Materials Transactions A,1997,28A(2):377-387.
  • 7Krauss G.Deformation and fracture in martensitic carbon steels tempered at low temperatures[J].Metallurgical and Materials Transactions B,2001,32B (2):205-221.
  • 8Davis J R.Metal Handbook(Tenth Edition)[M],Volume 1,Properties and Selection:Iron,Steel,and High-Performance Alloys,ASM International,1990.
  • 9Ayer R,Machmeier P.On the characteristics of M2C carbides in the peak hardening regime of AerMet 100 steel[J].Metallurgical and Materials Transactions A,1998,29A (3):903-905.
  • 10Vasudevan V K,Kim S J,Wayman C M.Precipitation reactions and strengthening behavior in 18 wt.% nickel maraging steels[J].Metallurgical Transactions A,1990,21A(10):2655-2668.

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