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One effective method to improve the radiating quality for flex-tensional transducer IV

机译:一种改善弯曲张力传感器IV辐射质量的有效方法

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摘要

Usually, when the flex-tensional IV transducer works, the vibration in the long-axis direction of shell is with opposite phase to the vibration in the short-axis direction. This will lower the transducer's effective radiating quality and the electro-acoustic transforming efficiency. In this paper, one method to avoid this phenomenon of flex-tensional transducer IV is introduced. Two pistons are attached to the short sides of the shell. Only the pistons, not the shell, are touched with water. All the results from theoretical analysis, FEM calculation and test show that this method can effectively reduce the transducer's vibration frequency, and improve the transducer's electro-acoustic transforming efficiency with unchanged transducer volume (which is 400*280*250 cubic mm). The test results also show that the transducer's source level can reach 192.2 d B, with the efficiency 22% and the frequency 390 Hz.
机译:通常,当弯曲拉伸IV换能器工作时,壳体的长轴方向上的振动与短轴方向上的振动具有相反的相位。这将降低换能器的有效辐射质量和电声转换效率。在本文中,介绍了一种避免弯曲拉伸传感器IV现象的方法。两个活塞固定在壳体的短边。只有活塞而不是外壳被水接触。理论分析,有限元计算和测试的所有结果表明,该方法可以有效地降低换能器的振动频率,并在不改变换能器体积(400 * 280 * 250立方毫米)的情况下提高换能器的电声转换效率。测试结果还表明,换能器的源电平可以达到192.2 d B,效率为22%,频率为390 Hz。

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