复合粉末

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复合粉末复合粉末
  1. 机械合金化制备WNiCu纳米复合粉末的研究

    Study on the nanometer w ni cu composite powder produced by mechanical alloying

  2. 采用复合粉末加压成型的方法,在铜基体表面上复合了纳米CuZn合金表面层,获得了具有纳米结构表面层的铜基复合材料。

    Copper-matrix composites with nanocrystalline Cu-Zn surface layer were obtained by using composite powder compacting process .

  3. B4C/BN纳米复合粉末的制备与显微结构的研究

    Preparation and Microstructure of the B_4C / BN Nanocomposite Powders

  4. 复合粉末中Al2O3颗粒分布均匀、无宏观和微观偏析,增强相与基体之间结合牢固。

    The combination between the reinforced phase of Al_2O_3 and the matrix is strong .

  5. 碳热还原法合成B4C及B4C/TiB2复合粉末的研究

    Research on the Synthesis of B_4C and B_4C / TiB_2 Composite Powder by Carbothermal Reduction Processing

  6. 高能球磨纳米CeO2/Zn复合粉末的热压烧结

    Hot-press Sintering of CeO_2 / Zn Nanocomposite Powders Prepared by High-energy Ball Milling

  7. 纳米CeO2/Zn复合粉末的高能球磨法制备与表征

    Preparation and Characterizations of CeO_2 / Zn Nanocomposite Powder by High-Energy Ball Milling

  8. 溶胶一凝胶法制备FeCo/Al2O3纳米复合粉末

    Preparation of FeCo / Al_2O_3 nano-composites powder by Sol-gel

  9. 将不同HA粉末以及玻璃粉与HA的复合粉末在不同温度下烧结成陶瓷。

    Under different temperatures , HA powders and glass / HA composites were sintered .

  10. Fe基粉末与Fe基+AL2O3复合粉末热喷涂层性能的对比研究

    Study of Comparing The Sprayed Coating Capability Between Fe Based Powder With Fe Based-AL_2O_3 Combined Powder

  11. 用CO2激光器对铁&铜基梯度复合粉末冶金压坯进行了激光辐射烧结。

    The Fe Cu compacts with a gradient composition were sintered by a CO 2 laser .

  12. Al(OH)3和Sr(OH)2复合粉末的制备及性能研究

    Study on Properties and Preparation of Al ( OH ) _3 and Sr ( OH ) _2 Composite Powder

  13. 用化学共沉淀法制备了铟锡氧化物(ITO)复合粉末。

    ITO complex powders were synthesized by using chemical coprecipitation method .

  14. Cu含量对纳米晶W-Cu复合粉末烧结行为的影响

    Effect of Cu Content on Sintering Behavior of Nanograined W-Cu Composite Powder

  15. 镍基MoS2复合粉末等离子喷涂涂层的干滑动摩擦磨损性能

    Dry Sliding Wear and Friction Behaviors of Plasma-sprayed Nickel-based MoS_2 Cermets Coating

  16. 纳米NiAl2O4圈层包覆Al2O3复合粉末的制备

    Preparation of Al_2O_3 powder with nano-NiAl_2O_4 coating

  17. 纳米Al2O(3p)化学镀铜复合粉末的烧结致密化

    Sintering densification of Cu / Al_2O_ ( 3p ) nano-composite powders by electroless copper plating

  18. 系统探讨了微波烧结Cu粉及TiB2/Cu复合粉末压坯的各种影响因素。

    Various kinds effect factors of the Cu powder and TiB2 / Cu composite powder compact sintered by microwave were systematically studied .

  19. 稀土含量和还原温度对制备超细(W,Ni,Fe)复合粉末的影响

    Effects of rare earth content and reduction temperature on preparation of superfine ( W , Ni , Fe ) composite powder

  20. 以人造黑钨矿和石墨为原料,采用机械活化还原扩散法制备FeWC复合粉末。

    The Fe-WC composite powder is prepared by mechanical activation - reductive diffusion with synthetic tungsten mine and graphite .

  21. 介绍了一种制备超细WC-Co复合粉末的新工艺&流化床还原碳化法。

    A new technology for manufacturing ultrafine WC-Co composite powder by reduction and carburization in fluid-bed has been described in this paper .

  22. 研究结果表明:当还原温度高于650℃时制得的复合粉末由Fe和Fe-(Cr,W)两相组成;

    The results indicate that the phases of the composite powder reduced at high temperature above 650 ℃ contain Fe and ( Cr , W );

  23. 用机械合金化制备超细WC-Co-Cr3C2复合粉末

    Preparing composite powder of WC Co CR 2C 3 by mechanical alloying

  24. 高速气流冲击法制备BN包覆TiB2复合粉末

    Fabrication of TiB_2 Composite Powders Coated with h-BN by High Speed Airflow Impact

  25. 低温燃烧合成法制备ZrO2基纳米复合粉末

    Synthesis of ZrO_2 Based Nanocrystalline Powders by Low-Temperature Combustion

  26. 球磨WC-Co纳米复合粉末的合成和成形

    Synthesis and Consolidation of Ball - milled Nanocomposite WC - Co Powders Compaction

  27. 一种利用废残粗晶硬质合金生产超细WC-Co复合粉末的新方法

    A New Method of Producing Ultrafine WC-Co Composite Powder from Scrap Sintered Carbide

  28. 通过磨盘碾磨制备了PP/石墨复合粉末,进一步与PP填充复合制备出PP/石墨系列导电复合材料。

    PP / graphite compounding powders were prepared through pan milling , and then a series of PP / graphite composites were made from them .

  29. 研究了添加晶种的碳热还原SiO2法制取Si3N4/SiC复合粉末的工艺。

    His paper presents the production technique of Si3N4 / SiC composite powder by carbothermic reduction of silica .

  30. Fe-Ni纳米复合粉末的制备及其表征

    Preparation and characteristic of Fe - Ni nano - composite powders