Shi Haoran, Chen Zhaojiang, Chen Xi, Liu Shiqing, Cao Wenwu
Department of Physics, Zhejiang Normal University, Jinhua, Zhejiang 321004, China.
Department of Physics, Zhejiang Normal University, Jinhua, Zhejiang 321004, China.
Ultrasonics. 2021 Dec;117:106562. doi: 10.1016/j.ultras.2021.106562. Epub 2021 Aug 26.
Tone-burst excitation is often used for ultrasonic transducers of specific operation modes or for overcoming transducer overheating problems associated with continuous wave (CW) excitation. In this study, a theoretical model for the self-heating phenomenon of a piezoelectric disc element is established to estimate the temperature rise induced by a tone-burst electric field. An analytical solution for the temperature rise of the piezoelectric element is obtained by using Laplace transform method. Numerical simulations and experimental measurements are performed to investigate the influence of different excitation parameters on the temperature rise. By comparing the experimental results with the simulation results, the temperature-rise difference between tone-burst and CW excitations is quantified, and the validity of the theoretical model is verified. Furthermore, a multiparameter estimation method is proposed for the heat convection coefficient and dielectric properties under high-field operating conditions. These results are useful in both optimization of heat dissipation performance and characterization of high-power ultrasonic transducers.
猝发声激励常用于特定工作模式的超声换能器,或用于克服与连续波(CW)激励相关的换能器过热问题。在本研究中,建立了压电圆盘元件自热现象的理论模型,以估计猝发声电场引起的温度升高。通过拉普拉斯变换法得到了压电元件温度升高的解析解。进行了数值模拟和实验测量,以研究不同激励参数对温度升高的影响。通过将实验结果与模拟结果进行比较,量化了猝发声激励和连续波激励之间的温度升高差异,并验证了理论模型的有效性。此外,还提出了一种多参数估计方法,用于高场工作条件下的热对流系数和介电特性。这些结果对于优化散热性能和表征高功率超声换能器都很有用。