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管线钢合金设计及其研究进展 被引量:12

Pipeline Steel Alloy Design and Its Research Progress
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摘要 详细介绍了管线钢合金设计的基本特征——低碳或超低碳的微合金化和多元合金化,着重论述了以超高强度为目标的硼合金设计,以高温轧制工艺技术(HTP)为依托的高Nb合金设计和基于防止焊接热影响区脆化的微Ti合金设计等管线钢合金设计的几个重要进展。 It detailedly introduced basic characteristics of pipeline alloy design—micro-alloying of low Carbon or ultra-low Carbon and multi-alloying,and emphasized B alloy design target to ultra-high strength,high Nb alloy design based on high temperature process and tiny Ti alloy design based on preventing HAZ embrittlement.
作者 高惠临
出处 《焊管》 2009年第11期5-12,共8页 Welded Pipe and Tube
基金 国家自然科学基金项目(50874090)
关键词 管线钢 合金设计 高温轧制工艺(HTP) pipeline steel alloy design high temperature process(HTP)
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参考文献5

  • 1WANG S,KAO P W. Effect of Alloying Elements on the Structure and Mechanical Properties of Ultra Low Cbainitic Steels[J]. J. Mater Sci, 1993(28):5169.
  • 2Sumitomo Metal Industries Ltd. Material Design Concept and Production of X80 SAW Line Pipe [ C ]//The International Symposium Proceedings on X80 Steel Grade Pipelines. Beijing: China National Petroleum Corporation, 2004:290 - 298.
  • 3SUBRAMANIAN S V,ZUROB H S,ZHU Z.高强度石油天然气管线钢的合金设计[C]∥石油天然气管道工程技术及微合金化钢.北京:冶金工业出版社,2007:194-204.
  • 4JFE Steel Corporation. Production and Application of Grade X80 Line Pipe [ C ]//The International Symposium Proceedings on X80 Steel Grade Pipelines. Beijing: China National Petroleum Corporation,2004:300 - 311.
  • 5YOSHIO T, YASUHIRO S, TAKUYA H, et. al. High Strength Linepipe with Excellent HAZ Toughness and Deformability [ C ] // Seminar Forum of XIOO/XI20 Grade High Performance Pipe Steels. Beijing: China National Petroleum Corporation ,2005:313 - 332.

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