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960 MPa Grade High Performance Weldable Structural Steel Plate Processed by Using TMCP 被引量:6

960 MPa Grade High Performance Weldable Structural Steel Plate Processed by Using TMCP
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摘要 To develop high strength, good toughness, and weldable steel plate, a steel composition was designed. It was an ultra-low-carbon microalloyed steel. TMCP (thermal mechanical control process) and RPC (relaxation precipitation control) were employed to ensure fine lath bainite microstructure. This kind of microstructure could induce higher strength and better toughness. To develop high strength, good toughness, and weldable steel plate, a steel composition was designed. It was an ultra-low-carbon microalloyed steel. TMCP (thermal mechanical control process) and RPC (relaxation precipitation control) were employed to ensure fine lath bainite microstructure. This kind of microstructure could induce higher strength and better toughness.
出处 《Journal of Iron and Steel Research International》 SCIE EI CAS CSCD 2010年第2期63-66,共4页
基金 Item Sponsored by National Key Basic Research and Development Program of China (2006AA03Z507)
关键词 low-carbon bainitic steel acicular ferrite SUBSTRUCTURE relaxation precipitation control low-carbon bainitic steel acicular ferrite substructure relaxation precipitation control
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  • 1David Porter, Anssi Laukkanen, Pekka Nevasmaa, et al. Performance of TMCP Steel With Respect to Mechanical Properties After Cold Forming and Post-Forming Heat Treatment [J]. International Journal of Pressure Vessels and Piping, 2004, 81 (10/11): 867.
  • 2Susumu Machida, Hiroshige Kitada, Hiroshi Yajima, et al. Extensive Application of TMCP Steel Plates to Ship Hulls: 40 kgf/mm^2 Class High Yield Stress Steel [J]. Marine Structures, 1988, 1(3): 219.
  • 3Lv Z Q, Sun S H, Wang Z H, et al. Effect of Alloying Elements Addition on Coarsening Behavior of Pearlitic Cementite Particles After Severe Cold Rolling and Annealing [J]. Materials Science and Engineering, 2008, 489A(1/2): 107.
  • 4Kinsman K R, Aaronson H I. Transformation and Hardenability in Steels [M]. Michigan: Climax Molybdenum Co, 1977.
  • 5Maki T, Talor K A, Thompson S W, et al. Physical Metallurgy of Direct-Quenched Steels [M]. Warrendale: TMS, 1993.
  • 6NIE Wen-jin. YANG Shan-wu, YUAN Shao-qiang, et al. Dissolving of Nb and Ti Carbonitride Precipitates in Microalloyed Steels [J]. Journal of University of Science and Technology Beijing, 2003, 10(5): 78.
  • 7YANG Shan-wu, WU Hui-hing, YUAN Shao-qiang, et al. Dislocation Precipitate Interaction and Its Effect on Thermosta bility of Bainite in a Nb-Bearing Steel [J]. Materials Science Forum, 2005, 475-479: 125.

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