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Microalloyed Steels for Heat Treating Applications at Higher Process Temperatures

Microalloyed Steels for Heat Treating Applications at Higher Process Temperatures
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摘要 The potential is considered for use of microalloyed bar steels,in conjunction with thermomechanical processing,to enhance the properties of steels heat treated at higher process temperatures than have been used historically.Two examples are highlighted:microalloyed spring steels with enhanced resistance to tempering and Nb-modified gear steels for high temperature vacuum carburizing,e.g.on the order of 1050℃ versus 930℃ for a typical gas carburizing operation.In the spring steel example,the Nb+V steel results in significantly finer prior austenite grain sizes than the other steels considered,enhanced fatigue performance,and improved toughness.In the Nb-modified carburizing steel,Nb additions up to 0.1 wt pct to a Ti-modified 8620 steel,in conjunction with thermomechanical processing to control initial precipitate distributions prior to carburizing,are shown to lead to materials with improved resistance to abnormal austenitic grain growth at the higher process temperatures.Alloy content and heating rate to the carburizing temperature were shown to be important variables and suppression of abnormal grain growth was correlated with the development of a critical distribution of fine NbC precipitates,stable at the austenitizing temperature leading to improved fatigue performance in steels with fine and uniform grain structures.Opportunities for extending the results of this study to alloy design and controlled rolling in bar mills are assessed. The potential is considered for use of microalloyed bar steels,in conjunction with thermomechanical processing,to enhance the properties of steels heat treated at higher process temperatures than have been used historically.Two examples are highlighted:microalloyed spring steels with enhanced resistance to tempering and Nb-modified gear steels for high temperature vacuum carburizing,e.g.on the order of 1050℃ versus 930℃ for a typical gas carburizing operation.In the spring steel example,the Nb+V steel results in significantly finer prior austenite grain sizes than the other steels considered,enhanced fatigue performance,and improved toughness.In the Nb-modified carburizing steel,Nb additions up to 0.1 wt pct to a Ti-modified 8620 steel,in conjunction with thermomechanical processing to control initial precipitate distributions prior to carburizing,are shown to lead to materials with improved resistance to abnormal austenitic grain growth at the higher process temperatures.Alloy content and heating rate to the carburizing temperature were shown to be important variables and suppression of abnormal grain growth was correlated with the development of a critical distribution of fine NbC precipitates,stable at the austenitizing temperature leading to improved fatigue performance in steels with fine and uniform grain structures.Opportunities for extending the results of this study to alloy design and controlled rolling in bar mills are assessed.
出处 《Journal of Iron and Steel Research(International)》 SCIE EI CAS CSCD 2011年第S1期80-89,共10页 钢铁研究学报(英文版)
基金 the sponsors of the Advanced Steel Processing and Products Research Center an NSF Industry/University Cooperative Research Center at the Colorado School of Mines
关键词 MICROALLOYING NIOBIUM thermomechanical processing CARBURIZING abnormal grain growth microalloying niobium thermomechanical processing carburizing abnormal grain growth
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参考文献32

  • 1马莉,王毛球,董瀚.微合金化渗碳齿轮钢的研究进展[J].特殊钢,2008,29(4):28-30. 被引量:14
  • 2K. A. Erven,D. K. Matlock,G. Krauss.Effect of sulfur on bending fatigue of carburized steel[J]. Journal of Heat Treating . 1991 (1)
  • 3L. J. Cuddy,J. C. Raley.Austenite grain coarsening in microalloyed steels[J]. Metallurgical Transactions A . 1983 (10)
  • 4Thompson R E,Matlock D K,Speer J G.The Fatigue Performance of High Temperature Vacuum Carburized Nb Modified 8620 Steel. SAE Technical Paper No. 2007-01-1007 . 2007
  • 5F.B. Pickering.The Spectrum of Microalloyed High Strength Low Alloy Steels. HSLA Steels Technology & Applications . 1983
  • 6Jaiswal J,McIvor I D.Microalloyed High Carbon Steel Rod. Ironmaking and Steelmakeing .
  • 7Mori T,Nagase T,Hatano A.Controlled Rolling and Cooling in Chita Plant of Daido Steel. Denki-Seiko [Electric Furnace Steel] . 1998
  • 8Matlock D K,Speer J G,Jansto S G,Stuart M.Development of Microalloyed Steels for High Temperature Carburizing,". Proceedings of the Fourth Baosteel Biennial Academic Conference . 2010
  • 9ALOgab K A,Matlock D K,Speer J G,Kleebe H J.The Influence of Niobium Microalloying on Austenite Grain Coarsening Behavior of Ti-Modified SAE 8620 Steel. Iron and Steel Institute of Japan . 2007
  • 10AlOgab K A,Matlock D K,Speer J G,H J Kleebe.The Effects of Heating Rate on Austenite Grain Growth in a Ti-Modified SAE 8620 Steel with Controlled Niobium Additions. Iron and Steel Institute of Japan . 2007

二级参考文献18

  • 1张英才.汽车用齿轮钢及其应用技术的某些进展[J].汽车技术,2004(10):22-26. 被引量:10
  • 2董允,林晓娉,马晓莉,刘根生,丁玮.30SiMnCrVNb细晶粒高强钢的干摩擦磨损行为[J].钢铁研究学报,2006,18(9):40-43. 被引量:2
  • 3木村利光.大同特殊鋼の歯車用鋼[J].特殊鋼,2005,54(2):49-49.
  • 4住田庸,柴田康浩.冷鍛用肌燒鋼の製造方法及ひその方法により製造された冷鍛用肌燒鋼.日本:P2003-231917A,2003-8-19
  • 5住田庸.浸炭処理されろ駆動系鍛造部品の動向と課題.熱処理,2005,45(2):76
  • 6羽生田智纪.新世代浸炭技術と鋼材開發[J].熱处理,2004,44(5):276-276.
  • 7Matlock D K,Alogab K A,Richards M D. Surface Processing to lmprove the Fatigue Resistance of Advanced Bar Steels for Automotive Applications. Materials Research ,2005,8 ( 4 ) :456
  • 8村井暢宏.高温浸炭用鋼[J].特殊鋼,2004,53(1):25-25.
  • 9Morais R F de, R.eguly A, Almeida l, H de. Transmission Electron Microscopy Characterization of a Nb Microalloyed Steel for Carburizing at High Temperatures. Journal of Material Engineering and Performance ,2006,15 ( 4 ) :497
  • 10Hyde R, Krauss G, Matlock D. Phosphorus and Carbon Segregation : Effects on Fatigue and Fracture of Carbufized 4320 Steel. Metallurgical Transactions A, 1994,25 A ( 6 ) : 1229

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