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首页> 外文期刊>Sensors and Actuators >Experimental investigation of on-demand ferrofluid droplet generation in microfluidics using a Pulse-Width Modulation magnetic field with proposed correlation
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Experimental investigation of on-demand ferrofluid droplet generation in microfluidics using a Pulse-Width Modulation magnetic field with proposed correlation

机译:用脉冲宽度调制磁场用脉冲宽度调制磁场对微流体的按需铁磁流体液滴产生的实验研究

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摘要

Micro-magnetofluidics offers a promising tool to regulate the drop formation process with versatile applications in engineering and biomedicine. In the present study, on-demand ferrofluid drop generation at a T-junction is investigated utilizing a magnetic pulse. Also, a novel method for ferrofluid droplet formation is introduced using a non-uniform Pulse-Width Modulation (PWM) magnetic field. A novel mechanism of drop generation named "beating regime" was seen for the first time in which the ferrofluid moves back and forth before the breakup. The effect of the magnetic induction, continuous phase flow rate, duty cycle, and applied frequency on the generation frequency and drop diameter was investigated under the PWM magnetic field and compared with those under the DC magnetic field. The results showed that greater values of drop diameter and generation frequency are obtained either when the magnetic induction and/or duty cycle increases or when the applied frequency decreases. The regime maps of ferrofluid droplet formation were presented for different magnetic Bond and Capillary numbers under both PWM and DC magnetic fields and compared with each other. Finally, a correlation was presented to estimate the dimensionless drop diameter on the basis of four nondimensionalized parameters, showing a 7.2% average relative error.
机译:Micro-Magnetofluidics提供了一个有前途的工具,可以通过工程和生物医学的多功能应用来调节落下形成过程。在本研究中,利用磁脉冲研究了在T型结处的按需铁磁流体下降。而且,使用非均匀脉冲宽度调制(PWM)磁场引入了一种用于铁磁流体液滴形成的新方法。首次看到名为“跳动制度”的小型辍学机制,其中铁磁流动在分手前来回移动。在PWM磁场下研究了磁感应,连续相流量,占空比和施加频率对产生频率和下降直径的影响,并与DC磁场下的那些相​​比。结果表明,当磁感应和/或占空比增加时或施加频率减小时,获得更大的下降直径和产生频率值。在PWM和直流磁场下,在PWM和DC磁场下呈现不同的磁性键和毛细数量的氟氟流液滴形成的制度映射。最后,提出了一种相关性以估计基于四个非潜入的参数的无量纲下落直径,显示7.2%的相对误差。

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