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1)  PZT-95/5 ceramic
PZT-95/5陶瓷
1.
In this paper, basing on a principle that two-wave can be detected when structure phase transition occurs, we measured the phase transformation pressure from the ferroelectric phase to the antiferroelectric phase of national PZT-95/5 ceramic under shock loading .
本文对国产的PZT-95/5陶瓷在冲击波作用下发生铁电相(FE)→反铁电相(AFE)的相变压力进行了实验研究。
2)  PZT-95/5 ferroelectric ceramic
PZT-95/5铁电陶瓷
1.
With a light gas gun for generating the shock wave loading,the PZT-95/5 ferroelectric ceramic has been shock compressed to induce a phase transformation for electric depoling.
利用轻气炮作为加载手段,对PZT-95/5铁电陶瓷进行冲击波压缩,以实现陶瓷受激相变放电。
3)  PZT-5 ferroelectric ceramics
PZT-5铁电陶瓷
4)  95% Al2O3 ceramic
95%Al2O3陶瓷
1.
By analyzing the microstructure of metallized layers of 95% Al2O3 ceramic in Mo-Mn process before and after sintering,the microstructure of sintered bodies consisted of different content Mo and metallized layers of high pure and high dense alumina ceramic were studied.
通过对95%Al2O3陶瓷Mo-Mn金属化层烧结前后显微结构的分析,对不同Mo含量金属化配方的块状烧结体及高纯高致密Al2O3陶瓷表面金属化层显微结构的研究,探讨了95%Al2O3陶瓷Mo-Mn金属化层的烧结过程,揭示了Mo骨架结构中Mo颗粒间气孔形成的机理。
5)  PZT ceramic
PZT陶瓷
1.
Investigation of the ferroelectric domain of PZT ceramic;
粗大晶粒PZT陶瓷中电畴的结构
2.
Electroless plating of nickel is an advanced metalizing PZT ceramic technology.
化学镀镍是一种先进的PZT陶瓷覆镀电极层的技术,其镍层附着力大小是影响电极层质量的关键因素。
3.
Through analyzing effect on electric properties of PZT ceramic made by forming pressure, sintering temperature and soaking time, it was identified that compact ceramic could be obtained at forming pressure of 200 MPa, sintering temperature of 1200℃and soaking time of 2 h.
重点研究粉体的原料配比、烧结特性和陶瓷的烧成温度、成型压力﹑恒温时间及Nb~(5+)掺杂前后对PZT陶瓷压电、介电性能的影响。
6)  PZT ceramics
PZT陶瓷
1.
Internal friction due to the interaction between oxygen vacancies and domain boundaries in PZT ceramics;
PZT陶瓷中由氧空位与畴壁相互作用引起的内耗
2.
The Large Field-induced Strain Effects on Modified PZT Ceramics;
改性PZT陶瓷的大场诱应变效应
补充资料:电解质陶瓷(见快离子导体陶瓷)


电解质陶瓷(见快离子导体陶瓷)
electrolyte ceramics

电解质陶瓷electrolyte陶瓷。Cera』n1CS即快离子导体
说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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