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- 导电陶瓷Ti3SiC2conductive ceramics Ti3SiC2
- 非导电陶瓷Non-conductive ceramics
- 导电陶瓷颗粒conductive ceramic particles
- Ti3SiC2陶瓷Ti3SiC2 ceramic
- 非导电陶瓷SiO2insulating ceramics SiO2
- Cu/Ti3SiC2-TiCCu/Ti3SiC2-TiC
- Cu-Ti3SiC2复合材料Cu-Ti3SiC2 composite
- 导电陶瓷conductive ceramics
- 导电陶瓷材料conducting ceramic material
- Ti3SiC2/SiC复相陶瓷Ti3SiC/SiC muhiphase ceramics
- 阻挡层半导电陶瓷barrier layer semiconductive ceramics
- 大多数金属能导电。Most metals conduct electricity.
- 采用氧化锆磨球可以使Ti3SiC2的颗粒更好地细化且均匀分散在Al基体中,而用钢球和玛瑙球则易产生混合粉的团聚。The particle size of Ti_3SiC_2 will be decreased to about 100 nm and the particles distribute homogeneously in the aluminum powder prepared with zirconia balls,whereas the conglomeration will be formed using steel balls and agate balls.
- 高斯定律建立了流出一个导电表面的电通量之间的关系。Gauss' Law establishes the relation between electric flux flowing out of a surface.
- 烧成温度与导电陶瓷电性能关系的研究STUDY OF THE RELATIONSHIP BETWEEN FIRING TEMPERATURE AND ELECTRICAL PROPERTY OF THERMOSENSITIVE CERAMIC
- 体导电Volume eonduction
- 导电量charge passed
- 导电布conducting fabric
- 导电制conduction style
- 美术陶瓷artistic ceramics