conductive ceramics

英 [kənˈdʌktɪv sɪˈræmɪks] 美 [kənˈdʌktɪv səˈræmɪks]

网络  导电陶瓷

化学



双语例句

  1. The experimental research of EDM process of conductive engeering ceramics using a special power supply by controlling pulse discharging energy, is discussed.
    通过专用脉冲电源脉冲放电能量的控制,进行了导电性工程陶瓷材料的电火花放电加工试验研究。
  2. Property Characterization and Technical Study on Combustion Synthesis of AlN-Based Conductive Ceramics under High Nitrogen Pressure
    氮化铝基导电陶瓷高压燃烧合成工艺与性能表征
  3. Microstructure and Mechanical Properties of AlN-TiN-TiB_2 Composite Conductive Ceramics
    AlN-TiN-TiB2复相陶瓷的显微结构和力学性能
  4. TiO_2 and MgO doped ZnO conductive ceramics
    TiO2和MgO掺杂的ZnO导电陶瓷材料
  5. The Processing Research of Using Silver/ conductive Ceramics Composite Inter-electrode Paste to Make Multi-layer Apparatus
    采用银/导电陶瓷复合内电极浆料制造多层器件的工艺研究
  6. Measurement and study of resistivity at room temperature for La 2O 3 based conductive ceramics
    La2O3基导电陶瓷室温电阻率的测试与研究
  7. The conductive ceramics with the largest infrared absorption peak correspond to the smallest resistivity.
    具有最大红外吸收峰的导电陶瓷对应最小的电阻率。
  8. Effect of sintering atmosphere on the relative density and conductive properties of Ni-Fe spinel ceramics
    烧结气氛对Ni-Fe尖晶石陶瓷致密化和导电性能的研究
  9. Researches and Applications of BaPbO_3 Conductive Ceramics
    BaPbO3导电陶瓷的研究与应用
  10. Study on conductive characteristics of ZnO ceramics doped niobium at low temperature
    氧化锌陶瓷铌掺杂效应的低温导电特性研究
  11. A new high power oxide conductive ceramics and its properties are introduced.
    介绍一种新型大功率氧化物导电陶瓷及其有关性能参数。
  12. The influence of composition of La 2O 3 based conductive ceramics on its sintering property and resistivity at room temperature was studied.
    主要研究La2O3基导电陶瓷的组成对其烧结性能及室温电阻率的影响。
  13. High Power Oxide Conductive Ceramics and its Applications on Automobiles
    大功率氧化物导电陶瓷及其在汽车上的应用
  14. Study on Ba_ ( 1-x) Sr_xPbO_3 System Conductive Ceramics and Their Conductivity
    Ba(1-x)SrxPbO3系导电陶瓷及其导电性的研究
  15. In order to apply the conductive Ti_3SiC_ 2-class ceramics to fabricate the pantograph strip of high-speed train, the friction and wear behaviours as well as the relevant mechanisms of a Ti_3SiC_2 material were investigated.
    以Ti3SiC2系导电陶瓷材料在高速列车受电弓滑板的应用为背景,对Ti3SiC2材料的摩擦-磨损行为及相关机理进行了研究。
  16. The Microstructure and Conductive Mechanism of ZnO Conductive Ceramics
    ZnO导电陶瓷的微观结构与导电机理
  17. Corrosion Mechanism of BN-AIN-TiB_2 Conductive Composite Ceramics ( BAT Ceramics) to Aluminum melt and Ways to Enhance its Corrosion Resistivity
    BN-AIN-TiB2导电复相陶瓷的熔铝腐蚀机理及其提高耐蚀性途径
  18. Study of Conductive Characteristics in ZnO Ceramics
    ZnO基陶瓷的导电性能研究
  19. This paper studied process of sintering in doped Y_2O_3 ZnO conductive ceramics by means of positron annihilation technique. It has been discussed that effect of sintering temperature on conductive characteristics, local electronic density and structrual defects.
    应用正电子湮没技术,对掺杂Y2O3的ZnO导电陶瓷烧结过程进行了研究,给出了烧结温度对导电特性、局域电子密度、结构缺陷的影响特征。
  20. Mix conductive ceramics and metal or metal-oxide which acts as the third phase into silver matrix in different proportions, and then discuss its effect on the arc corrosion. mass transfer, electrics and arc blazing time performances of the contacts.
    通过向银基体中掺入不同比例导电陶瓷,以及第三相金属或金属氧化物,探讨其对于触点材料转移、烧损、电学、燃弧性能的影响规律。
  21. The Physical Properties of a New Type of Conductive Ceramics with Oxide
    新型氧化物导电陶瓷的物理性质
  22. Measurement and study of resistivity of conductive ceramics based on La 2O 3 at high temperature
    La2O3基导电陶瓷高温电阻率的测试和研究
  23. A Study of Electro-Machinability of Conductive Composite Ceramics
    导电复合陶瓷的电加工性研究
  24. A New-Type High-Power Oxide Conductive Ceramics
    新型大功率氧化物导电陶瓷
  25. Studies on Relation Between Electrical Characteristic and Microstructure of La xBa 1 x CoO 3 System Conductive Ceramics
    LaxBa(1-x)CoO3系导电陶瓷的显微结构与电特性关系的研究
  26. The conductive ceramics is a kind of high-performance functional material, which combines the electrical properties of metal and structural properties. Therefore it has many advantages over common metal in certain physicochemical properties.
    导电陶瓷是集金属电学性质和陶瓷结构特性于一体的高性能功能材料,具有一般金属所不能比拟的物理化学性质。
  27. The results showed that with the increase of titanium sub-oxide conductive ceramics in semi-solid suspension, the discharge capacity and discharge voltage platform of semi-solid flow Zn/ Ni battery was increased.
    结果表明,随着亚氧化钛导电陶瓷含量的增加,半固态液流锌镍电池的放电容量和放电电压平台均有所增加。