稀土镁合金

  • 网络Rare earth magnesium alloy;RE-Mg;Zn-Mg-RE;Mg-Gd-RE-Zr
稀土镁合金稀土镁合金
  1. 稀土镁合金经过挤压后,其力学性能得到很大提高;

    After hot-extrusion , the mechanical properties of RE-Mg alloys promote greatly .

  2. 脉冲频率及占空比对稀土镁合金微弧氧化膜的影响

    Effects of Pulse Frequency and Duty Cycle on Micro-arc Oxidation Film of RE-Mg Alloy

  3. 二元稀土镁合金Mg-La和Mg-Nd的组织和性能

    Investigation on the Properties of Mg-La and Mg-Nd Binary Magnesium-Rare Earth Alloys

  4. 系统研究了二元稀土镁合金Mg-2%La(L2)和Mg-2%Nd(N2)的铸态显微组织、拉伸性能和抗蠕变性能。

    The as-cast microstructure , tensile properties and creep resistance of binary magnesium alloy Mg-2 % La ( L2 ) and Mg-2 % Nd ( N2 ) are studied thoroughly in the present investigation .

  5. 热处理对Mg-Nd-Gd-Zr稀土镁合金组织与性能的影响

    Effect of Heat Treatment on Microstructure and Mechanical Properties of Mg-Nd-Gd-Zr Alloy

  6. 研究用ICP-AES光谱仪测定稀土镁合金中钙、镁、锰、钛的方法,建立了最佳的工作条件,测出元素的检出限及测定下限,并进行干扰试验、准确度试验、回收率试验。

    To research the method determining the Ca , Mg , Mn , Ti in rare earths magnesium by ICP AES spectrometer . The optimum working conditions are founded . The detection limit and low limit of determination are determined .

  7. Mg-Al-Zn-Nd稀土镁合金成形性能研究

    Study on Shaping Property of Mg-Al-Zn-Nd Magnesium Alloy

  8. 稀土镁合金近非平衡液相线铸造研究

    Investigation on Nonequilibrium Near-Liquidus Casting of Thixotropic Magnesium-Rare Earth Base Alloys

  9. 稀土镁合金中稀土总量的测定&草酸盐重量法测定稀土总量

    Determination of total rare earth content with oxalate gravimetric method

  10. 并对含稀土镁合金进行了评价与展望。

    The development and application prospects for rare earth-magnesium alloys are analyzed .

  11. 概要论述了稀土镁合金的发展进程;

    The development process of RE-containing magnesium alloys was briefly summarized firstly .

  12. 稀土镁合金高温形变孪生变体的选择规律

    Selection law of deformation twinning variants at elevated temperature in Mg-RE alloy

  13. 稀土镁合金低周疲劳行为的研究

    Study on the Low Cycle Fatigue Behavior of Rare Earth Magnesium Alloys

  14. 高铬铸铁采用稀土镁合金进行变质处理的效果

    Effect of RE-Mg alloy modification on high chromium cast iron

  15. 含与不含稀土镁合金的磨损速率都随载荷的增加而增加,磨损机制均发生了由轻微磨损向严重磨损的转变;

    Magnesium alloys undergo a transition from mild wear to severe wear .

  16. 稀土镁合金的热力学性质研究

    The Study of Thermodynamical Properties for Rare Earth-Magnesium Alloys

  17. 主要研究稀土镁合金中稀土总量的测定。

    The determination of total rare earth content of rare earth-magnesium alloy were studied .

  18. 偶氮氯膦Ⅲ光度法测定稀土镁合金中稀土总量

    Spectrophotometric determination of total RE in alloy of magnesium-rare earth alloy with chlorophosphonazo ⅲ

  19. 含稀土镁合金的研究与开发

    The Research and Development of Mg-Rare Earth Alloy

  20. 稀土镁合金铸造和挤压态组织及力学性能研究

    Study on the Microstructure and Mechanical Properties of the Mg-RE Alloys at As-cast and As-extrusion

  21. 稀土镁合金的孕育作用

    The Inoculation of Re - Mg Alloy

  22. 稀土镁合金的发展、应用及开发

    Development and Application of RE Mg Alloy

  23. 结果表明:含稀土镁合金在不同温度和应变速率下力学性能呈现不同形式。

    The results show that the mechanical properties present different forms at different temperatures and strain rates .

  24. 叙述了国内外稀土镁合金的发展状况,对稀土镁合金的性能及应用作了较为详细的阐述。

    Description is made of the present development of RE Mg alloy both at home and abroad .

  25. 本文总结了稀土镁合金的研究工作。

    A review was made on the investigations of the rare earth ( RE ) containing magnesium alloys .

  26. 本文介绍了应用稀土镁合金使高炉铁液变质处理的试验及结果。

    The paper reports results of experiments with rare earth-magnesium alloy applied to modify iron melt in blast furnace .

  27. 球化剂稀土镁合金的加入量为1.0%~1.8%。

    The addition of rare earth - magnesium - ferrosilicon alloy used as nodularizer was of 1.0 % ~ 1.8 % .

  28. 稀土镁合金作为一种高性能的新型镁合金材料,越来越受到人们的重视。

    As one kind of new advanced materials , Mg-based alloys with additions of rare earth elements have been paid to more attentions .

  29. 含稀土镁合金具有强度高、抗蠕变能力强和热稳定性好的优点,得到了材料研究者的广泛关注。

    Mg-rare earth alloys have received material researchers ' great interest because of their high strength , good creep resistance and thermal stability .

  30. 本课题研究Mg-Y-Nd-(La+Ce)-Zr稀土镁合金作为生物可降解镁合金支架材料的腐蚀行为。

    The corrosion behavior of Mg-Y-Nd - ( La + Ce ) - Zr alloy as the bio-absorbable magnesium stent material was investigated in present study .