为了提高臭氧发生器的臭氧产量,要求臭氧发生器用的陶瓷基板材料具有较高的介电性能和热导率。
To raise ozone output of ozonator, it demands that ceramic plate materials for ozonator have good dielectric properties and quite high thermal conductivity.
磁性介电陶瓷合成材料,其生产及使用方法,以及多功能元件。
Magnetodielectric ceramic composite material, method of manufacturing same, application, and multifunctional element.
采用冷压陶瓷处理技术制备了高介电率钛酸钡陶瓷材料。
The cold-pressing ceramic processing technique was used to prepare high-permittivity Barium Titanate ceramics.
实验研究表明,铁电陶瓷的高频介电弛豫主要是由材料内部的畴壁共振引起的。
The results indicate that high frequency dielectric relaxation of the ferroelectric ceramics is caused by piezoelectric resonance of domains.
研究了五种不同水泥基体及三种不同陶瓷功能体对0 - 3型水泥基压电复合材料压电、介电、铁电性能的影响。
Influences of different cement matrix and ceramic on the piezoelectric properties, dielectric properties and ferroelectric properties of the 0-3 cement-based piezoelectric composites are studied.
本发明还公开了通过调节银颗粒的含量可以制备具有不同介电性能的陶瓷-金属复合材料。
The present invention also discloses a method for preparing ceramic-metal composite materials with different dielectric properties by adjusting the content of the silver particle.
研究了压电陶瓷体积分数对1 - 3型水泥基压电复合材料的压电性能和介电性能的影响。
Volume fraction dependence of the piezoelectric and dielectric properties of 1-3 type piezoelectric composites is studied.
采用电滞回线方法和偏置直流电场中叠加小交变电场方法研究了锆钛酸铅反铁电陶瓷材料在强电场作用下的介电行为。
The dielectric behaviour of antiferroelectric lead zirconate titanate has been studied by measuring the polarization and capacitance changes with the electric field.
本文简要介绍了电子陶瓷系统中绝缘体、介电质、压电体及铁电薄膜材料及其制备工艺和应用方面的一些新进展。
In this paper, Some of the recent developments in materials, processes and applications for dielectrics, piezoelectrics, and ferroelectric thin...
钛酸锌微波介质陶瓷因其优异的介电性能、较低的烧结温度,而被广泛应用于制备银、铜电极共烧中温低介微波材料中。
As ZnTiO3 has the outstanding dielectric property and low sintering temperature, it has been mixed with Ag, Cu, etc. to prepare electrodes at relatively low sintering temperature.
钛酸锌微波介质陶瓷因其优异的介电性能、较低的烧结温度,而被广泛应用于制备银、铜电极共烧中温低介微波材料中。
As ZnTiO3 has the outstanding dielectric property and low sintering temperature, it has been mixed with Ag, Cu, etc. to prepare electrodes at relatively low sintering temperature.
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