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(07A936) Development of magnetostrictive inkjet head for liquid droplet formation

机译:(07A936)磁致伸缩喷墨头用于液滴形成

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This paper presents the development of Magnetostrictive inkjet head (MAG-Jet), which consists of a Terfenol-D actuator, a chamber connected to a fluid reservoir through a fluid inlet, and a glass nozzle. The functional requirement for the MAG-Jet is that the droplet must exit the nozzle at a speed of 5 m/s. The diameters of the chamber and nozzle are set to 1.0 mm and 100 μm, respectively. To achieve the functional requirement of the initial settings, a fluid dynamic model is developed for estimating the required force per unit area exerted by the Terfenol-D actuator. Then, a mathematical model of the magnetic circuit for the actuator is developed in terms of magnetic flux and reluctance, and this is foL1_0wed by a finite element analysis using a commercial program. The developed MAG-Jet is used to evaluate the performance. The input current of all the experiments is set as ± 1.8 A and the bipolar waveform is selected as the basic driving waveform. Also, the optimal process is ensured to determine the time values for the driving waveform. The designed driving waveform applied to the MAG-Jet has the inflow time of 370 μs, ejection time of 10 μs, holding time of 360 μs, and breakup time of 10 μs. Successful droplet formation is made by using the developed MAG-Jet.
机译:本文介绍了磁致伸缩喷墨头(Mag-jet)的开发,该头部由Terfenol-D致动器组成,通过流体入口和玻璃喷嘴连接到流体贮存器的腔室。磁射流的功能要求是液滴必须以5米/秒的速度离开喷嘴。腔室和喷嘴的直径分别设定为1.0mm和100μm。为了实现初始设置的功能要求,开发了一种流体动态模型,用于估计由Terfenol-D执行器施加的每单位面积的所需力。然后,在磁通量和磁阻方面开发了致动器磁路的数学模型,这是使用商业程序的有限元分析的fol1_0。开发的Mag-Jet用于评估性能。所有实验的输入电流设定为±1.8a,并选择双极波形作为基本驱动波形。而且,确保最佳过程确定驱动波形的时间值。施加到磁射流的设计的驱动波形具有370μs的流入时间,喷射时间为10μs,保持时间为360μs,分离时间为10μs。使用型磁铁喷射制备成功的液滴形成。

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