The Study of Fabric Drying Using Direct-Contact Ultrasonic Vibration

Chang Peng, S. Moghaddam
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引用次数: 2

Abstract

Our existing cloth drying technology is an energy-intensive process, which generally involves blowing hot air across tumbling wet fabrics to facilitate evaporation and moisture removal. To address the relatively low energy efficiency of existing cloth drying techniques, in this chapter, a totally new cloth drying technology is introduced, which uses high frequency ultrasonic vibrations generated by piezoelectric transducer instead of thermal heating to extract moisture in cloth as a cold mist, dramatically reducing drying time and energy consumption. The physical mechanism of ultrasonic fabric drying process in direct-contact mode is first studied. A novel ultrasonic transducer driving method, in which the power supply to the transducer is regulated by a binary modulating signal, is then developed for use in direct-contact ultrasonic drying of fabrics. A demonstration unit is finally fabricated to show the efficacy of the process and its energy saving compared to thermal drying process.
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直接接触超声振动干燥织物的研究
我们现有的布料干燥技术是一个能源密集型的过程,通常需要在翻滚的湿织物上吹热空气,以促进蒸发和去除水分。针对现有布料干燥技术能源效率较低的问题,本章介绍了一种全新的布料干燥技术,该技术利用压电换能器产生的高频超声波振动代替热加热,以冷雾的形式提取布料中的水分,大大缩短了干燥时间和能耗。首先研究了超声波织物直接接触干燥过程的物理机理。提出了一种用于织物直接接触式超声干燥的新型超声换能器驱动方法,其中换能器的电源由二进制调制信号调节。最后制作了一个示范装置,以显示该工艺的有效性和与热干燥工艺相比的节能效果。
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