致密化

zhì mì huà
  • Densification;densifying
致密化致密化
致密化[zhì mì huà]
  1. TiC-Ni材料燃烧合成与致密化工艺参数的优化

    Optimization of Process Parameters During Ti-C-Ni Cermets Combustion Synthesis and Densifying

  2. 描述了松散粉末在刚性模中的压制过程,介绍了粉末体压制过程中的致密化及变形理论的发展;

    This paper describes the compaction of the powder in rigid mould and the development of densifying and deformation mechanism during this process .

  3. 由特征指数n值对比研究了它们的烧结致密化机制。

    The sintering mechanisms were investigated by comparing the characteristic exponent n .

  4. (Ca,Mg)-α-Sialon的致密化,形成特性和显微结构

    Densification , Formation Behavior and Microstructure of ( Ca , Mg ) a Sialon

  5. H组还表现为心肌纤维横纹模糊,部分线粒体致密化。

    Animals in H group showed unclear transverse striation of myocardial fiber and pyknosis in some mitochondria .

  6. ZnO压敏陶瓷的致密化过程

    Study on the densification process of ZnO voltage sensitive ceramics

  7. 它的技术含量高,作用大,是制取高强度、高取向度、致密化和细特化PAN原丝的必备装置。

    It has excellent tensile strength and high degree of orientation .

  8. TiC-Al2O3复合材料的自蔓延高温合成和致密化

    Fabrication of tic-al_2o_3 composites by self-propagating high - temperature synthesis and densification

  9. 主要研究了激光点火反应烧结NiAlCU系粉末材料的致密化机理。

    The mechanisms for densification during laser ignited reaction sintering of Ni-Al-Cu powder materials were studied .

  10. SiC晶须分散工艺及SiC晶须/Y-TZP复合材料致密化的研究

    Studies on SiC whisker dispersion process and SiC whisker / y-tzp composite densification

  11. YAG烧结体致密化程度随烧结温度的升高而增大。

    And the density is increased as the sintering temperature is higher .

  12. 氧化物法低温烧结Li系铁氧体的固相反应、致密化过程及微波性能

    Solid Reaction , Densification and Microwave Properties of Low Temperature Sintered Li Ferrites Prepared by Oxide Method

  13. 共沉淀法合成近零膨胀ZrW2O8/ZrO2复合陶瓷的致密化

    Densification of nearly-zero-thermal-expansion ZrW_2O_8 / ZrO_2 ceramics synthesized by chemical co-precipitation method

  14. TiO2和MgO微量添加剂对Al2O3陶瓷烧结致密化的影响

    Effect of TiO_2 and MgO Additions on Microstructures of Al_2O_3

  15. 掺杂Al的纳米ZrO2无压烧结致密化过程的研究

    Densification and Kinetics of No-Pressure Sintering of Al-ZrO_2 Nanometer Powder

  16. Mo对P/MTi-Mo合金烧结致密化和力学性能的影响

    Effect of Mo addition on Sintering Densification and Mechanic Properties of PM Ti-Mo Alloy

  17. 菱镁矿母盐假相对MgO烧结致密化的影响

    Influence of pseudomorph of magnesite on densification of MgO sintering

  18. ITO靶材热等静压致密化工艺研究铟锡氧化物陶瓷靶材热等静压致密化研究

    Investigation on hip technique for densification of indium tin oxide ceramic target

  19. α-Al2O3致密化速率与相对密度关系研究

    The investigation on the relationship between the densification rates and the relative density for α - al_2o_3

  20. Si3N4-MgO-CeO2陶瓷烧结中的致密化与自动析晶

    Densification and Automation Crystallization during Sintering of Si_3N_4-MgO-CeO_2

  21. 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

  22. 碳化硅晶须补强莫来石复合材料的SPS烧结致密化研究

    Study on the SPS densification of SiC whisker reinforced MULLITE COMPOSITES

  23. SnO2-Sb2O3基压敏陶瓷致密化及脉冲电流耐受特性

    Densification and Surge Current Performance of SnO_2-Sb_2O_3 Based Varistor Ceramics

  24. BN基复合陶瓷致密化的主要障碍

    The Main Obstacle to the Densification of BN-based Composite Ceramics

  25. ITO纳米粉末爆炸压实烧结致密化陶瓷靶材研究

    Investigation on Densification of ITO Ceramic Target by Using Exploring-Compression and Sinter Nano-powder Technique

  26. 而对耐磨寿命的提高则是由于薄膜致密化及Ag相弥散强化的结果。

    The increase in durability was resulted from both densification and dispersion-strengthen effect of Ag in the nanocomposite films .

  27. Al内氧化形成的氧化物,产生的体积膨胀可增加粉末烧结合金的致密化程度。

    Through internal oxidation treatment , the formed internal oxides produced the volume expanding , which improved the densification of Cu-Al powder sintering alloy .

  28. 多元耦合场CVI法快速致密化炭/炭复合材料研究

    Fast densification Study of C / C composites with multi-coupling fields CVI

  29. 碳/碳复合材料CVI致密化工艺的定量评价

    Quantitative evaluation of CVI Process for fabrication of carbon / carbon Composites

  30. Y2O3和La2O3对B4C基陶瓷烧结致密化及其结构和性能的影响

    Effects of Y_2O_3 and La_2O_3 on the Sintering Densification and Structure as well as Properties of B_4C Based Ceramics