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Effects of Pulse Voltage on the Droplet Formation of Alcohol and Ethylene Glycol in a Piezoelectric Inkjet Printing Process with Bipolar Pulse

机译:脉冲电压对双极性脉冲压电喷墨打印过程中乙醇和乙二醇液滴形成的影响

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The dynamics of droplet formation of liquid in a piezoelectric inkjet printing process with bipolar pulse and drop-on-demand (DOD) mode is investigated in this study. Two liquids with different viscosities and surface tension coefficients; alcohol and ethylene glycol, are studied. The effects of pulse voltage on the droplet formation are also examined. A piezoelectric actuated inkjet printhead with a nozzle orifice of 30 mu m in diameter is employed to conduct the investigations at room temperature (25 deg C). The complex morphologies of the droplets during their formation, which include ejection and stretching of liquid, contraction of liquid column, pinch-off of liquid column from nozzle exit, breakup of liquid column into primary droplet and possible satellites, and combination of primary drop and satellites, are demonstrated. The droplet size is in the range of 23-37 mu m. The investigations also show a workable pulse voltage range; between 28 and 40 volts, exists for the droplets to be smoothly generated and ejected for alcohol where viscosity and surface tension coefficient are smaller. The range is between 30 and 50 volts for ethylene glycol. Within this workable voltage range, one single droplet for each pulse can be achieved with lower voltage. For the intermediate voltage, two droplets are generated initially and collide into one during the flying stage. For the higher voltage, multiple droplets are formed without recombination. It is also found that the velocities of the main droplet and satellite droplet in the different voltage ranges are responsible for whether the multiple initial droplets can be recombined.
机译:本研究研究了在双极性脉冲和按需滴落(DOD)模式的压电喷墨打印过程中液体的液滴形成动力学。两种具有不同粘度和表面张力系数的液体;研究了乙醇和乙二醇。还检查了脉冲电压对液滴形成的影响。使用具有直径为30微米的喷嘴孔的压电驱动喷墨打印头在室温(25摄氏度)下进行研究。液滴形成过程中的复杂形态,包括液体的喷射和拉伸,液柱的收缩,液柱从喷嘴出口处的夹断,液柱破碎成初级液滴和可能的附属物,以及初级液滴和卫星,进行了演示。液滴尺寸在23-37μm的范围内。研究还显示了可行的脉冲电压范围。在28至40伏之间,对于粘度和表面张力系数较小的醇而言,存在着液滴的平滑产生和喷射。乙二醇的范围在30至50伏之间。在此可行的电压范围内,可以用较低的电压为每个脉冲获得一个液滴。对于中间电压,最初会生成两个液滴,在飞行阶段会碰撞成一个液滴。对于更高的电压,形成了多个液滴而没有重组。还发现,在不同的电压范围内主液滴和附属液滴的速度决定了多个初始液滴是否可以重组。

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