Elucidation of the “jumping and dropping” phenomena of piezoelectric vibrators in high-amplitude operation in the vicinity of their mechanical resonance frequencies

Kazunari Adachi, Yasuhiro Yamayoshi, Takuya Ebihara, Yuya Kawanabe
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Abstract

The peculiar events called the “jumping and dropping” phenomena of piezoelectric ceramic vibrators in high amplitude operation have widely been known. The phenomena, which occur solely in the vicinity of the mechanical resonance frequencies of the vibrators, are the emergence of hysteresis in frequency domain with abrupt increase and decrease of the vibratory amplitude. It has long been believed that the nonlinearity of the piezoelectric materials is the dominant cause of the unstable vibratory behaviors. Nevertheless, the authors have found that they can be attributed to the local piezoelectric polarization reversals due to the electric field concentration caused by its conspicuous distortion inside the vibrators in mechanical resonance. This hypothesis has been examined by numerical and experimental investigations for hard-type piezoelectric ceramic disks vibrating in axisymmetric radially pulsating mode.
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阐明压电振动器在机械共振频率附近高振幅运行时的 "跳跃和下降 "现象
众所周知,压电陶瓷振动器在高振幅运行时会出现被称为 "跳跃和下降 "现象的奇特现象。这种现象仅发生在振动器的机械共振频率附近,是振动振幅突然增大和减小时出现的频域滞后现象。长期以来,人们一直认为压电材料的非线性是造成不稳定振动行为的主要原因。然而,作者发现,它们可以归因于局部压电极化反转,这是由于机械共振时振动器内部的明显畸变导致电场集中造成的。作者通过对以轴对称径向脉动模式振动的硬型压电陶瓷盘进行数值和实验研究,验证了这一假设。
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