Design and manufacture an ultrasonic dispersion system with automatic frequency adjusting property

Javad Abbaszadeh Bargoshadia, Herlina Binti Abdul Rahimb, Sahar Sarrafic, Ruzairi Bin, Abdul Rahimd
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引用次数: 7

Abstract

In This paper a novel ultrasonic dispersion system for the cleaning application or dispersing of particles which are mixed in liquid, has been proposed. The frequency band of designed system is 30 kHz so that the frequency of ultrasonic wave sweeps from 30 kHz to 60 kHz with 100 Hz steps. One of the superiority of manufactured system in compare with the other similar systems which are available in markets is that this system can transfer the maximum and optimum energy of ultrasonic wave inside the liquid tank with the high efficiency in the whole of the usage time of the system. The used ultrasonic transducers in this system as the generator of ultrasonic wave is the type of air coupled ceramic ultrasonic piezoelectric with the nominal maximum power 50 watt. The frequency characteristic of applied piezoelectric is that it produces the maximum amplitude of ultrasonic wave on the resonance frequency, so this system is designed to work on resonance frequency of piezoelectric, continuously. This is done by the use of control system which is consisted of two major parts, sensing part and controlling part. In this system the Hall Effect current sensors is used as the sensing part and the controlling program is implemented on AVR microcontrollers. In addition, the control algorithm of program is presented in this paper. The manufactured ultrasonic dispersion system is consisted of 9 piezoelectrics so that it can produce 450 watt ultrasonic energy, totally.
设计制造了一种具有自动调频特性的超声波分散系统
本文提出了一种新型的超声波分散系统,用于清洗或分散混合在液体中的颗粒。设计的系统频带为30 kHz,使超声波的频率以100 Hz的步进从30 kHz扫至60 kHz。与市场上的同类系统相比,该系统的优点之一是在系统的整个使用时间内,能高效地将超声波的最大、最优能量传递到液槽内。该系统中使用的超声波换能器为空气耦合陶瓷超声压电型,其标称最大功率为50瓦。应用压电的频率特性是在谐振频率上产生最大振幅的超声波,因此本系统设计为在压电谐振频率上连续工作。该控制系统由传感部分和控制部分两大部分组成。本系统采用霍尔效应电流传感器作为传感部分,控制程序在AVR单片机上实现。此外,本文还给出了程序的控制算法。所研制的超声分散系统由9个压电体组成,可产生450瓦的超声能量。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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