浸渗

jìn shèn
  • infiltration
浸渗浸渗
浸渗[jìn shèn]
  1. B4C/Ni多孔预制体的烧结行为及对金属铅的浸渗

    Sintering Behavior of B_4C / Ni Porous Preforms and their Liquid Pb Metal Infiltration

  2. 反应浸渗法制备SiC/FeSix复合材料研究

    Manufacture of SiC / FeSi_x composite by reactive infiltration

  3. 偏磷酸铝粘结剂在真空液相浸渗制备Cf/Al复合材料中的应用研究

    Application Studies of Acid Phosphate Binder in C_f / Al Composites

  4. 浸渗-反应合成Cf/Ti-Al复合材料的反应机理

    Reaction Mechanism of C_f / Ti-Al Composite by Infiltration-Reaction Synthesis

  5. 挤压铸造硼酸铝晶须增强Al基复合材料浸渗过程理论分析

    Theoretical analysis on squeeze infiltration processing of aluminum borate whisker reinforced Al Composite

  6. Al2TiO5/Al2O3复合材料的制备及其抗热震和抗铝浸渗性能

    Fabrication , Thermal Shock-resistance and Aluminizing-resistance of Al_2TiO_5 / Al_2O_3 Composites

  7. 高含量Sip/Al复合材料的无压浸渗机制

    Pressureless infiltration mechanism of high content Si_p / Al composite

  8. 研究Al合金液浸渗Si多孔体的浸渗过程。

    The process of Al-alloys melt infiltration into Sip porous preforms was investigated .

  9. C/SiC复合材料等温化学气相浸渗过程的数值模拟研究

    Numerical Simulation of Isothermal Chemical Vapor Infiltration Process for Fabrication of C / SiC Composites

  10. 低压浸渗法制备Gr(C)/Mg复合材料

    Preparation of gr ( c ) / mg composites by low pressure infiltration

  11. 高含量SiP/Al热控制材料的无压浸渗工艺及热性能研究

    Study on Process and Thermal Properties of Si_P / Al Composites Prepared by Pressureless Infiltration

  12. 低压浸渗Preform制备Al2O3/Zn合金复合材料

    Fabricating Al_2 O_3 / Zn Alloy Composites by Low Pressure Infiltrating Preform

  13. Mg对无压自浸渗制备SiCp/Al复合材料组织与性能的影响

    Effect of Mg on microstructure and properties of SiC_p / Al composite fabricated by pressureless infiltration

  14. 无压浸渗高含量SiCp/Al复合材料的组织及压缩力学性能

    Microstructure and Compressive Mechanical Properties of SiC_p / Al Composite Made by Pressureless Infiltration Technique

  15. 碳化硅Sol-Gel法浸渗莫来石涂层研究

    Preparation of mullite coating on SiC by sol-gel method

  16. 无压浸渗法制备高体分比SiCp/Al

    SiCp / Al composites with high volume fraction prepared by pressureless infiltration

  17. 热浸渗法制备Si3N4陶瓷覆层初探

    Study on the Si 3N 4 Ceramics Coating Manufactured by Hot-Saturate

  18. 采用真空变压力浸渗法制备高体积分数SiCp/Al复合材料。

    The high volume fraction SiC_p / Al composites were fabricated by vacuum-adjustable pressure infiltration process .

  19. 热浸渗铝钢中Al4C3相的晶体学特征

    The crystallographic features of Al_4C_3 phase in hot-dip aluminized steel

  20. 在对渗铝钢管进行金相、SEM和能谱分析后,确定了热浸渗铝的基本工艺参数。

    By metalloscope , SEM and spectrometer , the basic technical parameters of hot dipping alumetizing were obtained .

  21. Si3N4/Al复合材料制备及无压浸渗技术研究

    Study on Pressureless Infiltration of Si_3N_4 / Al Metal Matrix Composites with Reinforcement of Reticulated Ceramics

  22. 采用无压浸渗工艺成功制备出Si体积含量为61&81%的高含量Si/Al复合材料。

    High volume fraction Sip-Al composites were fabricated by Al-alloy melt infiltration into Si particles porous preforms without external pressure successfully .

  23. 无压浸渗制备Si3N4/Al复合材料的界面反应研究

    Study of Interface Reaction in the Si_3N_4 / Al Composite Prepared by Pressureless Infiltration

  24. SiCP/LY12复合材料真空压力浸渗法中预制件制备工艺研究

    Studies on the Fabricating Process of SiC Particle Preforms for SiC_p / LY12 Composite in Vacuum Pressure Infiltration Techniques

  25. 用于悬浮浸渗法制备短GF/PP复合材料的PVA型悬浮液稳定性的研究

    Stability of PVA Suspensions for the Preparation of Short GF / PP Composites with Suspension Impregnation

  26. 液态挤压制备Al2O(3f)/LY12复合材料浸渗过程的数值模拟

    Numerical simulation of infiltration process in liquid extrusion for fabrication of Al_2O_3f / LY12 composites

  27. 浸渗反应技术制备AlN基复合材料

    Preparation of AlN Matrix Composites Using Infiltration and Reaction Approach

  28. 采用改进的压力浸渗工艺制备了宏观、微观质量均较好的SiCp/Al复合材料。

    Sound SiC p / Al composites with good macrostructure and microstructure can be obtained by improving press infiltration technology .

  29. 压力下浸渗半固态致密法制备Al2O(3sf)·SiCp/Al复合材料

    Preparation of Al_2O_ ( 3sf )· SiC_p / Al composites by infiltration-semi-solid densification under pressure

  30. 采用廉价SiO2原料,利用浸渗方法获得了Al2O3/Al复合材料。研究表明:熔融铝合金可在空气中自动浸入SiO2,无需真空或外加压力;

    Al 2O 3 / Al composites are obtained by infiltration method and the low cost SiO 2 material .