热压烧结

  • 网络hot pressing;hot pressed sintering;heat pressing
热压烧结热压烧结
  1. 热压烧结ZrC-SiC-Cg复相陶瓷的组织与力学性能

    Microstructure and Mechanical Properties of ZrC-SiC-C_g Ceramic Prepared by Hot Pressing

  2. 热压烧结Fe3Al金属间化合物的结构和摩擦学特性

    Microstructure and Tribology Properties of Hot Pressing Sintered Fe_3Al Intermetallic Material

  3. 先驱体转化&热压烧结法制备Cf/SiC复合材料

    C_f / SiC Composites Prepared by Precursor Pyrolysis and Hot Pressing

  4. 热压烧结法制备Cf/SiC陶瓷基复合材料研究

    The Study of C_f / SiC Ceramic Matrix Composites Fabricated by Hot Pressing Sintering Method

  5. 热压烧结能够提高材料的电阻率及B值。

    Resistivity and B value of these materials can be increased through hot press sintering .

  6. 采用热压烧结法制备了Co包覆纳米Al2O3/TiC复合材料。

    Cobalt-coated Al_2O_3 / TiC composites were fabricated by hot pressing sintering .

  7. 观察了热压烧结SEM腐蚀组织和SEM断口形貌。

    SEM corrosion structure and SEM appearance of fracture were observed .

  8. 热压烧结工艺制备Ti2AlC/Ti3AlC2陶瓷材料

    Fabrication of Ti_2AlC / Ti_3AlC_2 Ceramics Material by Hot Pressing

  9. 采用热压烧结工艺制备了B4C/(W,Ti)C陶瓷喷砂嘴;

    B_4C / ( W , Ti ) C ceramic nozzle was prepared by hot pressing .

  10. 无压及热压烧结法制备Ce-TZP/Al2O3复相陶瓷材料

    Pressureless and hot-pressing sintering of Ce-TZP / Al_2O_3 composite ceramics

  11. 热压烧结Ti3SiC2材料的性能

    Properties of Ti_3SiC_2 Synthesized by Hot Pressing

  12. 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

  13. 热压烧结Al2O3/Si3N4复相陶瓷的研究

    Research on Hot-Press Sintering of Al_2O_3 / Si_3N_4 Composite Ceramics

  14. MAFe-(Nb,Ti)-B纳米晶粉末热压烧结及磁性能

    Hot-press Sintering of MA Fe - ( Nb , Ti ) - B Nanocrystalline Powder

  15. 烧结助剂对反应热压烧结B4C基复合材料性能的影响

    Influence of sintering additive on the performance of B_4C based composites sintered by reaction hot-pressing

  16. 添加Al2O3对B4C材料热压烧结行为的研究

    Hot-pressure Sintering of B_4C-additive Al_2O_3

  17. 固态相变-热压烧结制备Ti3Al/TiC+Al2O3陶瓷复合材料

    Prepare Ti_3Al / TiC + Al_2O_3 Ceramic Composite by Phase Change in Solid State-Sintering under Hot Press

  18. GdB6对热压烧结B4C材料性能的影响

    Influence of GdB_6 on Performance of Hot-Pressing Sintering B_4C Material

  19. 研究了热压烧结Al2O3/nano-SiC复相陶瓷的力学性能及显微结构。

    The mechanical properties and microstructure of Al2O3 / nano-SiC multiphase ceramics made by hot-pressing were studied .

  20. 同时,利用制得的复合粉体,结合适当的热压烧结工艺制备了Cu-35SiCp热沉材料,并对热沉材料的微观组织和热物理性能进行了研究。

    Moreover , Cu-35 % SiC_p heat sink materials were fabricated by hot pressing based on the coated powder , and its microstructure and thermo-physical properties have been observed .

  21. 热压烧结Al2O3-SiC纳米陶瓷复合材料XRD和SEM研究

    XRD and SEM Analysis on Hot-pressing Al_2O_3-SiC Nanocomposite Ceramics

  22. 采用纳米SiC和亚微米SiC粉料作为基体形成原料,通过热压烧结技术制备了SiC/SiC复合材料。

    SiC / SiC composites were prepared by hot pressing using nano-SiC and sub-micrometer SiC powders for matrix formation .

  23. 以亚微米Al2O3粉末和WC-Co粉末为原料,经热压烧结制备了Al2O3/WC-Co金属陶瓷。

    Al2O3 / WC-CO cermets were prepared by a hot-pressing process .

  24. 高能球磨与热压烧结制备TiAl基合金

    Preparation of TiAl-based Alloys by High-energy Ball-milling and Hot-pressing Sintering

  25. 热压烧结BN基复合陶瓷的力学与物理性能

    Mechanical and Physical Properties of Hot-Pressed BN Matrix Composite Ceramics

  26. 热压烧结可以大大提高SiC/Cu–Al复合材料的致密度,最高达到理论密度的99.9%。

    The density of SiC / Cu – Al composites prepared by hot pressing can be improved and reach 99.9 % of theoretical density .

  27. 高能球磨热压烧结制备定向排布板状WC硬质合金

    Preparation of oriented plate-like WC grains in cemented carbides by high-energy ball milling and special hot-pressing sintering

  28. 采用Co包覆Al2O3/TiC纳米级粉料进行了不同Co含量、不同烧结温度的热压烧结实验。

    Al_2O_3 / TiC composites were prepared by hot pressing sintering at different temperatures using mixtures of Co-coated Al_2O_3 and TiC nano-powders with different Co content .

  29. 本文用Cu粉和Ti3SiC2粉,结合热压烧结的工艺方法,成功地制备了Ti3SiC2弥散强化铜基复合材料&Cu/Ti3SiC2。

    In this paper , we successfully fabricated Ti_3SiC_2 dispersion strengthened copper composite & Ti_3SiC_2 with Cu powder and Ti_3SiC_2 powder by hot pressing .

  30. CSjCTiCTiB2复合材料的原位合成及热压烧结

    In-situ synthesis and hot-press sintering of c-sic-tic-tib_2 composite