期刊文献+

P92钢的蠕变行为研究 被引量:19

Study of Creep Behavior of P92 Steel
原文传递
导出
摘要 在不同温度和压力条件下完成P92钢的蠕变及持久试验,采用SEM、TEM研究P92钢的强化机制及退化机制。持久试验外推强度同欧洲蠕变委员会公布的数据基本相同。Norton应力指数数值表明,高应力阶段的蠕变机制为位错蠕变。组织观察结果表明:P92钢的主要强化机制为位错强化及弥散强化,淬火得到的马氏体内部有高密度的位错,板条间的碳化物M23C6及弥散分布碳氮化物MX是P92钢热强性高的原因。随着位错密度的降低及析出相的粗化,P92钢的高温耐热性也降低。 The creep tests were finished on different temperatures and stresses.The strengthening and degradation mechanism were analyzed by SEM and TEM.The extrapolated creep rupture strengths were similar to the data declared by ECCC.The values of Norton stress exponents of high stresses creep indicate that the creep mechanism is dislocation mechanism.The results of microstructure investigation show that the strengthening mechanism of P92 steel is dislocation and dispersion strengthening.There are high density dislocations inside the martensite lath.Carbide M23C6 along the martensite lath and dispersed carbonitride MX are the reason why P92 steel have a high strength.The heat resistance of P92 steel decreases with the decreasing dislocation density and precipitated phases coarsening.
出处 《钢铁》 CAS CSCD 北大核心 2010年第9期82-85,90,共5页 Iron and Steel
关键词 P92钢 持久强度 Norton应力指数 强化机制 P92 steel creep rupture strength Norton stress exponent strengthening mechanism
  • 相关文献

参考文献7

  • 1Kloc L, Fiala J, Cadek J. A New Procedure to Evaluate Creep Data Obtained by the Helicoid Spring Specimen Technique Under Condition of Non-Viscous Creep Behavior [J]. Materials Science and Engineering, 1990,130A(1) : 61.
  • 2赵钦新,朱丽慧,顾海澄,等.10Cr9MolVNbN耐热钢的退化机理研究[C]//超超临界火电机组用钢铁材料国际研讨会.北京:钢铁研究总院,2005:185.
  • 3Dimmler G ,Weinert P, Kozeschnik E, et al. Quantification of the Laves Phase in Advanced 9-12% Cr Steels Using a Standard SEM[J]. Materials Characterization, 2003,51 (5) : a41.
  • 4Rodak K, Hernas A, Kietbus A. Substructure Stability of Highly Alloyed Martensitie Steels for Power Industry[J]. Materials Chemistry and Physics, 2003, 81 (2/3) : 483.
  • 5Hosoi Y, Wade N, Kunimitsu S, et al. Precipitation Behavior of Laves Phase and Its Effect on Toughness of 9Cr-2Mo Fferritic-Martensitic Steel[J].Journal o;f Nuclear Materails, 1986, 141-143(1) :461.
  • 6Miyahara K, Hwang J-H, Shimide Y. Aging Phenomena Before the Precipitation of the Bulky Laves Phase in Fe-10%Cr Ferritic Alloys [J]. Scripta Metallurgiea et Materialia, 1995, 32(12) :1917.
  • 7Hald J. Microstrueture and Long-Term Creep Properties of 9- 12% Cr Steels [J]. International Journal of Pressure Vessels and Piping,2008,85(1/2) :30.

同被引文献210

引证文献19

二级引证文献77

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部