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大功率收发兼备压电陶瓷材料的制备与性能研究
引用本文:鞠超,徐东宇,孙兆海,黄世峰. 大功率收发兼备压电陶瓷材料的制备与性能研究[J]. 现代技术陶瓷, 2010, 31(3): 8-12
作者姓名:鞠超  徐东宇  孙兆海  黄世峰
作者单位:[1]济南大学材料科学与工程学院,济南250012 [2]淄博宇海电子陶瓷有限公司,淄博255200
摘    要:采用传统固相烧结法制备Pb0.94Sr0.06(Zr0.53Ti0.47)O3+(Ni2O3+Cr2O3)0.1wt%+xwt%MnO2+ywt%CeO2(简称PCrNi-4)压电陶瓷,通过正交试验设计研究了MnO2掺杂、CeO2掺杂、烧结温度等因素对基体材料性能的影响。利用XRD和SEM,并结合常规电性能测试手段研究不同影响因素对材料相结构、微观结构以及压电介电性能的影响。结果表明,当w(MnO2)=0.1%,w(CeO2)=0.3%,烧结温度为1280℃时制备的陶瓷综合性能最佳,此条件下的试样各性能参数分别为:d33=304.8pC/N,Kp=0.6113,εT33=1520,tgδ=0.289%,d33×g33=61.12×10-12CVm/N,适合制备大功率收发兼备压电换能器。

关 键 词:大功率收发兼备压电陶瓷  介电损耗  相结构  压电性能

Study on processing and properties of high power and receiving- projecting dual- purpose piezoelectric ceramic
Ju Chao,Sun Zhaohai,Huang Shifeng,Xu Dongyu. Study on processing and properties of high power and receiving- projecting dual- purpose piezoelectric ceramic[J]. Advanced Ceramics, 2010, 31(3): 8-12
Authors:Ju Chao  Sun Zhaohai  Huang Shifeng  Xu Dongyu
Affiliation:Ju Chao Sun Zhaohai Huang Shifeng Xu Dongyu(1Shool of Materials Science and Engineering,Zibo 255200)2 Zibo Yuhai Electronic Ceramic Co.,Ltd,Zibo 255200)
Abstract:The piezoelectric ceramics Pb 0.94Sr 0.06(Zr 0.53Ti 0.47)O 3+(Ni 2O 3+Cr 2O 3)0.1wt%+xwt%MnO 2+ ywt%CeO 2(abbreviated as PCrNi-4)were prepared by traditional ceramics process in this paper.The influences of MnO 2and CeO 2-doping and sintered temperature on matrix material properties were studied by orthogonal tests.The effect of different inducing factor on microstructure and dielectric loss were analyzed by means of XRD,SEM and electric measurement.The results indicate that the optimum process conditions is w(MnO 2)= 0.1%、w(CeO 2)= 0.3% and the sintering temperature 1280℃.The main influencing factor on dielectric loss is MnO 2-doping.The property parameter of samples are:d 33=304.8pC/N,Kp=0.6113,εT33=1520,tgδ=0.00289,d 33×g 33=61.12×10-12CVm/N,which is suited to high power and receiving-projecting dual-purpose piezoelectric ceramic.
Keywords:high power and receiving-projecting dual-purpose piezoelectric ceramic  dielectric loss  phase structure  piezoelectric properties
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