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CHARACTERISING THE NONLINEAR DYNAMICS OF POWER ULTRASONIC SYSTEMS

机译:特写电力超声波系统的非线性动力学

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Laboratory and semi-industrial scale research have demonstrated that high power ultrasonic technology can be successfully applied to a variety of environmental, industrial and medical applications. It is known that the full scale-up of ultrasonic devices is hampered by the nonlinear vibration behaviour exhibited at high power. This paper investigates experimentally the nonlinear dynamic characteristics exhibited by an ultrasonic transducer of the Langevin type for industrial processing. Nonlinear mechanisms affecting the transducer performance such as modal interactions and response saturation are identified and characterised. Furthermore, a redesign strategy aimed at reducing the nonlinear behaviour of the power transducer is proposed. The results stemming from this work can be used for enhancing the design of ultrasonic devices powered by Langevin transducers.
机译:实验室和半工业规模研究表明,高功率超声技术可以成功应用于各种环境,工业和医疗应用。众所周知,超声波装置的完全扩大由高功率呈现的非线性振动行为阻碍。本文通过实验研究了Langevin类型的超声换能器,用于工业加工的超声换能器。影响换能器性能的非线性机制,例如模态相互作用和响应饱和度。此外,提出了一种旨在减少功率传感器非线性行为的重新设计策略。从该工作中源的结果可用于增强由Langevin传感器提供动力的超声波装置的设计。

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