无机材料学报 ›› 2015, Vol. 30 ›› Issue (2): 219-224.DOI: 10.15541/jim20140360

• • 上一篇    

极化对锆钛酸铅陶瓷力学性能的影响

于 瑶1,2, 王旭升1,2, 李艳霞1, 姚 熹1   

  1. (同济大学 1. 功能材料研究所; 2. 教育部先进土木工程材料重点实验室, 上海200092)
  • 收稿日期:2014-07-10 出版日期:2015-12-10 网络出版日期:2015-01-27
  • 作者简介:于 瑶. E-mail:yuyao9903@126.com

Effect of Polarization on Mechanical Properties of Lead Zirconate Titanate Ceramics

YU Yao1,2, WANG Xu-Sheng1,2, LI Yan-Xia1, YAO Xi1   

  1. (1. Functional Materials Research Laboratory, Tongji University, Shanghai 200092, China; 2. Key Laboratory of Advanced Civil Engineering Materials of the Ministry of Education, Tongii University, Shanghai 200092, China)
  • Received:2014-07-10 Published:2015-12-10 Online:2015-01-27
  • About author:YU Yao(1985–), female, candidate of PhD. E-mail:yuyao9903@126.com
  • Supported by:
    National Key Technology R&D Program of China (2009BAG12A04)

摘要:

本工作所采用的样品为锆钛酸铅陶瓷PZT-5H与PZT-8, 用动态力学分析仪(DMA)测试了极化前后PZT-5H与PZT-8在不同力学荷载频率下的杨氏模量和内耗与温度的关系。结果表明: PZT-5H和PZT-8的铁电-顺电相变温度(Tc)分别为438 K和550 K。极化前后PZT-8的杨氏模量都高于PZT-5H, 这是由于硬性取代导致PZT-8的内应力大于PZT-5H。极化后, PZT-5H与PZT-8的杨氏模量增大, 本文研究了极化前后压电效应对模量变化的影响。测试得出两种样品都存在一个弛豫内耗峰。分析表明, PZT-8的弛豫内耗峰由氧空位的扩散引起, 而PZT-5H弛豫内耗峰的形成机制则比较复杂, 与畴壁运动及畴壁在运动过程中与点缺陷的相互作用有关。计算得出极化后两种样品的弛豫激活能增加, 原因是极化导致局部内应力升高, 空间电荷沿极化电场排列, 两种因素都会对畴壁及空位的运动产生钉扎效应, 从而使弛豫过程更加困难。

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关键词: 杨氏模量, 内耗, DMA, PZT, 极化

Abstract:

This study concerns two following commercial lead zirconate titanate (PZT) materials, “soft” PZT-5H and “hard” PZT-8 piezoelectric ceramics. Young’s modulus and internal friction versus temperature at different vibration frequencies were investigated by means of Dynamic Mechanical Analysis (DMA) before and after polarization. The phase transition temperatures (Tc) of PZT-5H and PZT-8 ceramics were 438 K and 550 K. PZT-8 ceramic had higher Young’s modulus than PZT-5H ceramic at ferroelectric phase, which resulted from the increase of internal local stress in PZT-8 ceramic. After polarization, the Young’s modulus of both PZT ceramics increased, the influence of the piezoelectric effect was investigated. A relaxation peak emerges in internal friction curve of each PZT sample. Considering the hard ceramic, this peak is a pure relaxation mechanism controlled by oxygen vacancies diffusion. Considering the soft ceramic, the relaxation peak can be related to viscous motion of domain walls and the interaction between domain walls and point defects. The activation energy of the relaxation peak increased after polarization, which resulted from the increased local internal stress and directional arranged space charges caused by polarization.

Key words: Young’s modulus, internal friction, DMA, PZT, polarization

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