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Study on Temperature Characteristics of Ceramic Materials for Piezoelectric Actuators and Model Modification

机译:压电致动器陶瓷材料温度特性及模型改造研究

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摘要

The performance of piezoelectric actuator ceramics under strong electric field(20 kV/cm) and variable temperature (30~150℃) were tested on a piezoelectric ceramic thermo-electro-mechanical multi-field loading test bench. The variation of hysteresis loop, strain loop, free capacitor and dielectric loss tangent with temperature was analyzed. A mathematical model of displacement characteristics of ceramic materials considering temperature effect is established, and the accuracy of the model is verified. The results show that the hysteresis loops become slender with the increasing of temperature, while the residual polarization, maximum polarization and coercive field decrease. The effect of the temperature on the residual polarization and coercive field is stronger than that on maximum polarization. The strain loop presents a typical butterfly curve, and the negative strain decreases gradually to 0.12% with the increasing of temperature. In the unipolar electric field, the residual polarization varies slightly with the increasing of temperature, and the maximum polarization increases about 40%. The piezoelectric constant of the material increases linearly. The free capacitor and dielectric loss tangent increases continuously. The higher the temperature, the greater the increase.
机译:在强电场(20kV / cm)下的压电致动器陶瓷的性能和可变温度(30〜150℃)在压电陶瓷热电机械多场加载台阶上进行测试。分析了滞后回路,应变环,自由电容器和温度的介电损耗的变化。建立了考虑温度效应的陶瓷材料位移特性的数学模型,验证了模型的准确性。结果表明,随着温度的增加,滞后环变得细长,而残余极化,最大偏振和矫顽场降低。温度对残余偏振和矫顽场的影响比最大偏振上的效果强。应变环呈现典型的蝶形曲线,随着温度的增加,负应变逐渐降至0.12%。在单极电场中,残余偏振随温度的增加而变化,最大偏振增加约40%。材料的压电常数线性增加。自由电容和介电损耗正切形不断增加。温度越高,增加越大。

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