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PZT-95/5压电陶瓷的冲击波活化改性研究
引用本文:刘利,韩钧万.PZT-95/5压电陶瓷的冲击波活化改性研究[J].高压物理学报,1996,10(3):199-208.
作者姓名:刘利  韩钧万
作者单位:中国工程物理研究院流体物理研究所,四川成都 610003
摘    要: 研究了冲击波对PZT-95/5压电陶瓷的活化改性作用,对PZT-95/5粉末及块状材料进行动态冲击波加载。实验表明:在合适的条件下,冲击波作用可提高样品的密度ρ,压电应变常数d33,介电常数ε,降低介电耗损系数tg δ%。通过对样品进行X射线衍射,扫描电镜SEM、透射电镜TEM和X射线光电子能谱XPS等微观测试分析,揭示了冲击波改性的机理主要是:晶粒细化,晶界破坏,孔隙增多,缺陷增多,相变产生等,从而达到对样品改性的作用。

关 键 词:PZT-95/5压电陶瓷  冲击波  活化改性  烧结  X射线衍射  SEM
收稿时间:1996-04-15;

Shock Activation and Modification of PZT-95/5 Piezoceramics
LIU Li,HAN Jun-Wan.Shock Activation and Modification of PZT-95/5 Piezoceramics[J].Chinese Journal of High Pressure Physics,1996,10(3):199-208.
Authors:LIU Li  HAN Jun-Wan
Institution:Southwest Institute of Fluid Physics, Chengdu 610003, China
Abstract:This paper is about shock activation and modification of PZT-95/5 ceramics. The shock loading experiments of PZT-95/5 powder and block samples show that: in suitable conditions, the density (ρ), piezoelectric strain constant (d33) and dielectric constant (ε) of the samples can be increased and dielectric lost coefficient (tg δ%) be reduced. The results of X-ray diffraction, Scan Electronic Microscope and Transmission Electronic Microscope measurement are also given. It is concluded that the mechanism of activation can be attributed to pulverization of crystallites, crystal boundary damage, microcracks, defects increase and phase changed etc.
Keywords:PZT-95/5 piezoceramics  shock  activation modification  X-ray diffraction  SEM
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