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Lifetime of piezoceramic multilayer actuators: Interplay of material properties and actuator design

机译:压电陶瓷多层执行器的使用寿命:材料特性和执行器设计之间的相互作用

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摘要

We report an investigation into factors limiting the functional lifetime of multilayer piezoceramic actuators. The study consists of a combination of lifetime experiments by means of an accelerated lifetime test, inspection of the actuator microstructure at different stages of the accelerated lifetime test, and numerical simulation of the displacements and mechanical stresses that arise during actuator performance. During the lifetime test, both displacement and electrical properties were measured. The results show a clear correlation between the microstructure and the mechanical stresses in the actuator, giving evidence that crack initiation starts early in actuator lifetime and humidity effects accelerate degradation. The numerical simulations performed provide clues for optimization of the actuator design with respect to stress development and performance. Attention is paid to the choice of adhesive interlayer and its effect on the performance and lifetime of the actuator.
机译:我们报告调查限制多层压电陶瓷执行器功能寿命的因素。该研究包括通过加速寿命测试,在加速寿命测试的不同阶段检查执行器微结构以及在执行器性能过程中产生的位移和机械应力的数值模拟,进行寿命试验的组合。在寿命测试期间,测量了位移和电性能。结果表明,执行机构中的微观结构与机械应力之间存在明显的相关性,这表明在执行机构的寿命中裂纹萌生开始较早,而湿度影响则加速了退化。进行的数值模拟为针对应力发展和性能优化执行器设计提供了线索。注意粘合剂中间层的选择及其对致动器性能和寿命的影响。

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