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The Demonstration of Additive Manufacture in Power Ultrasonic and Sonar Transducers

机译:电力超声波和声纳传感器添加剂制造的演示

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摘要

Additive manufacture (AM) has been heralded as a disruptive technology with the potential to revolutionize manufacturing and transform how products are consumed. Within the power ultrasonic and sonar transducer domains, the capability of AM technologies to generate highly complex geometries could facilitate a step change in device performance, yet the usage of metallic additive manufactured parts in power ultrasonic or sonar devices is currently limited. This article demonstrates that it is possible to accurately model, using finite element methods, the vibratory behavior of a power ultrasonic device containing a part fabricated via AM before showing that the vibratory behavior of this device does not significantly vary from an identical device manufactured by conventional methods. Finally, a commercial Tonpilz-like sonar transducer containing a part fabricated by an AM technology is shown to exhibit similar performance to an identical device which contains conventionally manufactured parts.
机译:添加剂制造(AM)已将其作为一种破坏性技术,有可能彻底改变制造和改变产品的消费方式。在电力超声波和声纳传感器域内,AM技术能够产生高度复杂的几何形状的能力可以促进设备性能的步骤变化,但电力超声波或声纳器件中金属添加剂制造部件的使用目前有限。本文表明,使用有限元方法,可以准确地模拟包含通过AM的部件的功率超声装置的振动行为,然后显示该装置的振动行为不会从传统制造的相同装置显着变化方法。最后,示出了含有由AM技术制造的部件的商业TONPILZ样声纳换能器,其显示与包含常规制造部件的相同装置相似的性能。

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