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Ultrasonic transducers with Bessel function distribution of vibrational amplitude on their surfaces

机译:具有Bessel功能的超声波传感器在其表面上具有振动幅度分布

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In this paper the far field and near field of an ultrasonic circular transducer with a Bessel distribution of vibrational amplitude on its surface are calculated. The practical realizations of approximate Bessel-like amplitude distribution on the transducer surface are known. In this paper the vibrational characteristics of ultrasonic transducers consisting of a ceramic ring filled with a plastic disk were considered. Assuming that the amplitude on the surface of the plastic disk inside the ring is described by the Bessel function of zero order, the directivity characteristics of those transducers measured experimentally were presented. In the near zone the width of the measured main lobe is narrow, which is in accordance with the theoretical results for circular transducers with truncated Bessel function amplitude distribution. Changing the inner diameter of the ring, it is possible to control the resonance frequency of the filling plastic material. On the other hand, the resonance frequency of the ring may be regulated by varying its width, The existing coupling of resonant vibrations of the ceramic ring and plastic material enables variations of the bandwidth of the considered circular transducers. The Bessel transducers generate nondiffracting beams with a large depth of field. This is why the potential applications of Bessel transducers in robotics for object identification are worth noting.
机译:本文计算了超声圆形换能器在其表面上具有振动幅度的贝塞尔分布的远场和近场。在换能器表面上近似贝塞尔式幅度分布的实际实现是已知的。本文考虑了由装有塑料盘的陶瓷环组成的超声换能器的振动特性。假设通过零阶贝塞尔函数描述了环内部塑料盘表面的振幅,则介绍了通过实验测量的那些换能器的指向特性。在附近区域,被测主瓣的宽度很窄,这与具有截短的贝塞尔函数幅度分布的圆形换能器的理论结果一致。改变环的内径,可以控制填充塑料的共振频率。另一方面,可以通过改变环的宽度来调节环的谐振频率。陶瓷环和塑料材料的谐振的现有耦合使得能够改变所考虑的圆形换能器的带宽。贝塞尔传感器产生大景深的非衍射光束。这就是为什么贝塞尔传感器在机器人技术中用于对象识别的潜在应用值得关注的原因。

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