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首页> 外文期刊>International Journal of Modern Physics, B. Condensed Matter Physics, Statistical Physics, Applied Physics >Monitoring of failure mechanisms in a composite bending actuator during cyclic loading by acoustic emission
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Monitoring of failure mechanisms in a composite bending actuator during cyclic loading by acoustic emission

机译:通过声发射监测复合弯曲致动器在循环载荷过程中的失效机理

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摘要

The objective of this work is to investigate the influence of electromechanical cyclic loading on the performance of a bending piezoelectric composite actuator. We have analyzed the fatigue damage mechanisms in terms of the behavior of the AE event rate. It was found that whether the actuators are subjected to purely electric loading or electromechanical loading, the initial fatigue damage of the bending piezoelectric composite actuator was caused by the transgranular fracture in the PZT ceramic layer; the final failure was caused only in the case of PCAWB under electromechanical loading by a local discharge, which critically affected the performance reduction of the actuators. As the number of cycles increased, a large reduction in displacement performance coincided with a high AE event rate, which was identified via microscopic observations.
机译:这项工作的目的是研究机电循环负载对弯曲压电复合致动器性能的影响。我们已经根据AE事件发生率的行为分析了疲劳损伤机制。结果发现,无论是纯电动负载还是机电负载,压电复合材料致动器的初始疲劳损伤都是由PZT陶瓷层的穿晶断裂引起的。最终故障仅是在PCAWB在机电负载下通过局部放电引起的,这严重影响了执行器的性能降低。随着循环次数的增加,位移性能的大幅降低与高AE事件发生率相吻合,这可以通过显微镜观察确定。

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