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钢铁结构材料的组织细化

MICROSTRUCTURAL REFINEMENT OF STRUCTURAL STEELS

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【作者】 翁宇庆

【Author】 Weng Yuqing(The Chinese Society for Metals)

【机构】 中国金属学会

【摘要】 采用组织超细化提高钢铁结构材料的强韧性和使用寿命是20世纪90年代中期以来的发展趋势。本文介绍了我国“973”第一批项目之一“新一代钢铁材料重大基础研究”的主要五种超细化方法,适用于不同强度和显微组织的钢类:(1)具有铁素体+珠光体(F+P)的碳素或低合金钢,采用强力轧制和形变诱导铁素体相变(DIFT)技术;(2)在薄板坯连铸连轧现代流程下,采用第二相(析出相)的纳米化控制;(3)具有低碳贝氏体或针状铁素体的微合金钢采用形变诱导析出(DIP)和中温相变控制;(4)采用调制处理的合金结构钢,应用新的合金设计思路以提高界面温度,增加氢陷阱和二次硬化路线,快速超细晶热处理的综合技术;(5)发展无碳化物贝/马组织和富碳残奥薄膜以做到中低温回火合结钢的强韧化优良配合。

【Abstract】 Ultra-fine microstructure could increase strength, toughness and work life for steel products, this is developing trend since middle of 90th in last century of the world. In this paper, it has been introduced by fruitable results coming from National Project of "Fundamental Research on New Generation of Iron and Steel Materials in China" that five methods which perform Ultra fine microstructure process:(1) For Ferrite + Pearlite (F + P) microstructure, the heavy rolling and DIPT technology (Deformation Induced Ferrite Transformation) is applied;(2) In Thin - Slab casting and rolling (TSCR) process, controlling of nano- meter precipitator bas been performed;(3) For low carbon bainite steel (LCB) and Acicular Ferrite (A. F) microstructure, the combination of Deformation Induced Precipitation (DIP) and controlling at middle- temperature phase transformation is used, and developing "Relaxation - Precipitation - Controlling" (RFC) technology.(4) For alloy construction steel with quench and high temperature tempering, heat - treatment technique with getting Ultra- fine prior austenite grain size, increase of hydrogen traps and interface strength are combined.(5) Developing "carbide- free bainite / martensite microstructure with retained austenite film" technique is introduced.

  • 【会议录名称】 2002年材料科学与工程新进展(上)——2002年中国材料研讨会论文集
  • 【会议名称】2002年中国材料研讨会
  • 【会议时间】2002-10
  • 【会议地点】中国北京
  • 【分类号】TG142.1
  • 【主办单位】中国材料研究学会
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