压电堆在低温环境中的多物理合承载能力
Yang Li1, Yongping Zheng1, Leipeng Song1
1School of Automation and Electrical Engineering, Zhejiang University of Science and Technology, Hangzhou 310023, China.
Sensors (Basel, Switzerland)
|June 27, 2025
概括
这项研究量化了温度,预应力和电压如何影响压电堆负载能力. 研究结果显示,电压增强容量,前应力放大容量,而低温和低频降低性能.
科学领域:
- 多物理工程是多物理工程.
- 智能材料的特征表征
- 仪器仪表系统是指仪器仪表系统.
背景情况:
- 压电堆的性能是由复杂的热电机械相互作用决定的.
- 了解这些合效应对于在极端条件下的应用至关重要.
研究的目的:
- 开发一个集成的平台来量化压电堆中承载能力的依赖性.
- 分析温度,预压力和激发电压对性能的影响.
主要方法:
- 使用基于悬臂的传感机制来测量曲应变作为承载能力指标.
- 采用粒子群优化的理论框架来实现执行器和传感器配置.
- 在不同温度,预应力和激发电压条件下进行实验.
主要成果:
- 观察到随着激发电压的增加,承载能力的线性增强.
- 定量预应力放大 (79-90%) 和静态性能的热衰减 (15-30%).
- 在动态承载能力中发现了依赖频率 (1-6 Hz) 的降解.
结论:
- 开发的平台可以在合场条件下精确评估智能材料的行为.
- 建立了设计强大的多物理兼容仪器仪表系统的基础.
- 突出了影响压电堆在极端环境中的性能的关键因素.
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