共析组织

  • 网络eutectoid structure
共析组织共析组织
  1. 热压法获得Zn-Al共析组织的研究

    Zn-Al Eutectoid Structure Formed by Hot Compression

  2. 镍铝青铜中的共析组织

    Eutectoid Structures in Nickel-Aluminium Bronzes

  3. 共析组织、奥氏体和马氏体3种基体相比,共析组织基体使合金具有较高的摩擦系数,而奥氏体基体合金的耐磨性最好。

    The alloy with eutectoid matrix gives high friction factor and that with austenite has the best wear resistance .

  4. 最后讲述了珠光体生长的台阶机制及一些非铁碳合金的共析组织。

    At the last , the steps mechanism of pearlitic growing and some eutectoid structures of non Fe-C alloys are pointed out .

  5. 球墨铸铁共析转变组织的动态模拟

    Trends Dynamic Simulation of the Eutectoid Transformation of Nodular Cast lron

  6. 研究了中温预变形对亚、过共析钢组织的影响。

    The influence of pre-deformation at medium temperature on the transformed structures of plain carbon steels is investigated .

  7. Nb和Nb-V共析钢的组织与析出相的研究

    Microstructure and precipitation in Nb and Nb-V bearing eutectoid steels

  8. 用VISUALBASIC6.0语言开发了金相图像处理应用软件,应用该软件对输入计算机的亚共析钢显微组织图像进行判断、确认、推理处理后,可得到钢号及相关信息。

    This paper presents development of metallographic image processing software employing VISUAL BASIC 6.0 . The system can report model and other information of the hypo-eutectoid steel when the microstructure is distinguished and deduced .

  9. 亚共析钢魏氏组织的组织遗传现象研究

    Research on the hereditary phenomena of widmanstatten patterns in hypoeutectoid steels

  10. 剪切应变模式下超细共析片层组织演变研究

    Microstructure transformation of ultrafine eutectoid lamellar under deformation of shear strain

  11. 亚共析钢的组织超塑性

    Structural Superplasticity of Hypoeutectoid Steels

  12. 亚共析钢中魏氏组织的研究概况

    A Surver of the Research on Widmanstatten in Hypoeutectoid Steel

  13. 亚共析钢中魏氏组织对材料脆化倾向的影响

    The Effect of Widmanstatten Ferrite on The Embrittlement Tendency of Hypo-Eutectoid Steel

  14. 结果表明:0.21%Sc和0.15%Zr使锌铝共析合金铸态组织显著细化,阻尼性能提高,阻尼稳定性提高;

    The experimental results show that the addition of 0.21 % Sc and 0.15 % Zr can improve the as-cast structure of the alloy and increase the damping capacity and damping stability of Zn-22 % Al alloy .

  15. 基于离异共析转变的共析钢组织细化

    Microstructure refinement of eutectoid steel based on divorced eutectoid transformation