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Electromechanical Characterization of Bi-based Lead Free Ceramic Multilayer Actuators

机译:BI基无铅陶瓷多层致动器的机电表征

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摘要

The electromechanical behaviour of a lead-free ceramic multilayer actuator is described. The actuator is made of a Nd-doped bismuth-alkali-titanate ceramic with inner electrodes of an Ag/Pd-alloy. For electromechanical characterization the actuator is under constant mechanical load and the strain over the applied electric field is recorded. The mechanical load ranges from 0.1 to 80 MPa. The maximum applied electric field is 8 kV/mm. Starting with 0.1 MPa mechanical load the actuator exhibits a maximum strain of less than 0.1%. With increasing load the strain increases up to 0.17% at 5 MPa. With higher load the strain decreases and reaches 0.125% at 80 MPa. Reducing the mechanical load leads to a steady increase in strain, which results in a doubling of the strain at 0.1 MPa compared to the initial value. The strain characteristic contains an electrostrictive part, a linear piezoelectric regime as well as some creep behaviour.
机译:描述了无铅陶瓷多层致动器的机电行为。致动器由具有Ag / Pd-合金的内电极的Nd掺杂的铋 - 碱 - 钛酸盐陶瓷制成。对于机电表征,致动器处于恒定的机械载荷,并且记录了所施加的电场上的应变。机械负载范围为0.1至80MPa。最大施加的电场为8 kV / mm。从0.1 MPa机械负载开始,致动器的最大应变小于0.1%。随着载荷的增加,应变在5MPa下增加高达0.17%。较高载荷,应变降低,达到80MPa的0.125%。减少机械负荷导致应变的稳定增加,这导致与初始值相比0.1MPa的应变加倍。应变特性包含电致伸缩部分,线性压电状态以及一些蠕变行为。

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