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Electromechanical nonlinearities and losses in piezoelectric sonar transducer materials

机译:压电声纳换能器材料中的机电非线性和损耗

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摘要

Next-generation sonar projectors rely on piezoelectric single crystals such as lead magnesium niobate–lead titanate to induce mechanical strain and generate ever greater acoustic output, but the performance of these materials under high-power operation is not well understood. As the electrical driving force increases, the linear piezoelectric relationships give way to nonlinear, amplitude-dependent properties. Such behavior is impossible to predict solely from small signal, linear measurements. This work has characterized the behavior of single crystals by examining the dynamic relaxation from initial strain levels of 0.1 to 0.2%. Strain-dependent values of the mechanical quality factor and resonance frequency are reported for single crystals, and these properties are compared with conventional high-power piezoceramics.
机译:下一代声纳投影仪依靠诸如铌酸铅镁-钛酸铅之类的压电单晶来引起机械应变并产生更大的声输出,但是这些材料在大功率操作下的性能还不为人知。随着电驱动力的增加,线性压电关系被非线性的,与振幅有关的特性所取代。仅从小信号线性测量中就无法预测这种行为。这项工作通过检查从0.1%到0.2%的初始应变水平的动态弛豫来表征单晶的行为。报告了单晶的机械质量因数和共振频率的应变相关值,并将这些性能与常规大功率压电陶瓷进行了比较。

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