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Finite element design of a flex-tensional transducer excited by a folded actuator

机译:折弯激励器激励的挠性-张力传感器的有限元设计

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摘要

Study of low frequency, small size transducers was an important aspect for development of underwater acoustic transducers. Flex-tensional transducers of Class ? are typical low frequency, high-power and small size transducers. For reducing the resonance frequency, a new kind of flex-tensional transducers with excitation from folded actuators was put forward. The transducer was designed with finite element method using software ANSYS. Comparison between folded actuator excitation mode and traditional excitation mode was made. Such kind driving structures can effectively reduce the resonance frequency of the transducer. Combined with the shell made of low-stiffness material, the resonance frequency of the transducer in water can be reduced from 2.5 kHz to 1.2 kHz such that the purpose of reducing the resonance frequency of the transducer has been truly realized. Meanwhile, multiple flexural vibrations excited by this kind of folded actuator have also extended the bandwidth of the transducer.
机译:低频,小型换能器的研究是水下声换能器发展的重要方面。屈伸传感器是典型的低频,高功率和小尺寸传感器。为了降低共振频率,提出了一种新型的屈曲换能器,其具有折叠致动器的激励。该换能器是使用ANSYS软件以有限元方法设计的。比较了折叠式执行机构的励磁方式和传统的励磁方式。这种驱动结构可以有效地降低换能器的共振频率。结合低硬度材料制成的外壳,可以将换能器在水中的共振频率从2.5 kHz降低到1.2 kHz,从而真正实现了降低换能器共振频率的目的。同时,由这种折叠致动器激发的多次弯曲振动也扩展了换能器的带宽。

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