金属间化合物

  • 网络IMC;Intermetallic compound;intermetallics;intermetallic
金属间化合物金属间化合物
  1. 分析认为强磁场的存在加快了原子的运动,提高了原子的扩散系数,从而加快了界面金属间化合物层的生长速度。

    It is assumed that the high magnetic field accelerates the movement of atoms , improves the diffusion coefficient and thus enhances the growth rate of IMC layer .

  2. 粉末烧结形成Al基金属间化合物的研究

    Study on Al Based Intermetallic Compound Formed by Powders Sintering

  3. 稀土(R)-铁金属间化合物中的磁相互作用

    The magnetic exchange interactions in the R-Fe intermetallic compounds

  4. 等离子弧熔覆条件下Fe3A1金属间化合物涂层的原位合成制备

    The Preparation of In-situ Synthesized Fe_3Al Coating by Plasma Transferred Arc Surfacing

  5. 金属间化合物Cu4Al纳米微粉的热稳定性研究

    Thermal stability of nanocrystalline intermetallic compound Cu_4 Al powder

  6. 微量B、Mg对TiAl金属间化合物热变形行为的影响

    The effects of B and Mg on the hot deformation Of TiAl

  7. Al3Ti+Zn金属间化合物中Ll2相模型原子团的电子结构

    Electronic Structure of the Model Cluster for Ll_2 Phase of Intermetallic Compound Al_3Ti + Zn

  8. 介绍了Fe-Al基金属间化合物粉末的制备工艺过程,并讨论分析了工艺过程对金属间化合物形成的影响。

    The processes for preparing Fe Al intermetallic compounds by solid state reaction were presented .

  9. 金属间化合物Ni3Si合金的燃烧合成

    Research on combustion-synthesis of intermetallic compound Ni _3Si

  10. Ti对燃烧合成Ni3Si基金属间化合物组织结构的影响

    Effects of Ti on the Microstructure of Combustion Synthesised Ni_3 Si Based Intermetallic Compounds

  11. 实验发现,由于能够与Cd形成高沸点的金属间化合物,PdCl2提高了Cd的原子化温度;

    PdCl_2 can enhance the atomization temperature of metal Cd as it can form metal-metal compound .

  12. 激光熔敷Ti5Si3增强金属间化合物复合材料涂层结构及磨损机理

    Microstructure and Elevated Temperature Wear Mechanism of Laser Clad Ti_5Si_3 / NiTi_2 Intermetallic Composite Coating

  13. 可以看出随着金属间化合物中Si含量的增加,硬度值也会增加。

    We can see that hardness of intermetallic compounds will increase with the growing of Si content .

  14. Sol-gel自蔓燃法控制合成二氧化钛纳米粉体及性能金属间化合物的自蔓燃高温合成

    Controlled Synthesis of TiO_2 Nanometer Powders by Sol-gel Auto-igniting Process and Their Structural Property

  15. 金属间化合物FeAl与α-Al2O3的界面润湿行为及合金元素Y和Nb的作用

    Wettability of Intermetallic Fe-40al / α - Al2O3 System and the Effect of Microalloys Y and Nb

  16. 硬态负极铝箔要求金属间化合物粒子细小弥散分布在Al基体中,均匀的位错分布和柯氏气团,从而获得均匀的海绵孔腐蚀。

    And for as-rolled cathode foil , uniform distribution of intermetallic particles and high density of dislocations with cottrel atmosphere are required .

  17. Ti箔厚度过大时,则对金属间化合物的形态、分布以及界面反应层均产生不利的影响。

    While thick Ti foil has adverse effect on form and distribution of intermetallic compounds and interfacial reaction layer .

  18. L10-TiAl金属间化合物Mn,Nb合金化电子结构的计算

    First-principles Study on Electronic Structure of L1_0-TiAl Intermetallic Compound Alloyed by Mn or Nb

  19. TiAl金属间化合物研究现状及发展趋势

    Recent Status and Development Trend of Research on TiAl Intermetallic Compound

  20. B2型Fe3Al金属间化合物的应力腐蚀和氢致开裂

    Stress corrosion cracking and hydrogen induced cracking of ordered b_2 - type fe_3al

  21. 研究了TiAl金属间化合物及表面涂层在空气中的高温循环氧化行为。

    The cyclic oxidation behavior of TiAl alloy in air was studied .

  22. TiAl金属间化合物的强韧化及高温抗氧化分析

    The reinforced-toughening and oxidation-resistance in high-temperature analysis of TiAl Intermetallics

  23. 研究了高铌TiAl金属间化合物的材料制备工艺。

    The processing technology of high Nb containing TiAl alloy was studied .

  24. 钛、锆、TiAl金属间化合物中的孪生行为

    Twinning Behaviours in Titanium , Zirconium and TiAl Intermetallic Compound

  25. 本文重点综述了近年来对B2型NiAl金属间化合物及NiAl基合金的研究动态。

    The recent advances of B_2 type NiAl intermetallics and NiAl-base alloy are summarized .

  26. Al含量对Fe3Al金属间化合物耐磨性的影响

    Effect of Al Contents on Wear Properties of Fe_3Al Intermetallics

  27. 金属间化合物Nd3Co的比热测定最简单的量热计是一个带温度计的金属容器。

    The Specific heat of intermetallic compounds Nd_3Co ; The simplest calorimeter is a metal vessel used with a thermometer .

  28. 添加锰对TiAl金属间化合物孪生变形的影响

    Effects of mn-addition on twinning deformation in TiAl Intermetallics

  29. Fe-Al金属间化合物/Al2O3陶瓷复合材料研究

    Study on Fe-Al Intermetallic Compounds / Al_2O_3 Ceramic Composites

  30. Cr原子在Fe3Al金属间化合物亚点阵中占位测定

    Site occupation of Cr atoms at sublattice in fe_3al-based Intermetallics