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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Development and ejection behavior of different material-based electrostatic ink-jet heads
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Development and ejection behavior of different material-based electrostatic ink-jet heads

机译:不同材质的静电喷墨头的显影和喷射行为

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There has been growing interests in direct patterning of metallic contents on the surface of the substrate without including complex steps of the micro-fabrication lithography process. The direct fabrication process using electrostatic ink-jet printing can be expected to be a powerful tool for both nanotechnology research and applications such as microelectronics. The droplet ejection voltage, meniscus, cone-jet behavior, and counter electrode distance depends on the ink properties such as surface tension, viscosity, and percentage of metallic pigments. In this paper, 2-μm level needle-type electrostatic head designs for contact-less fabrication of printed electronics, composed of differently treated surface materials, have been studied and analyzed. The electrostatically actuated ink-jet heads were tested and compared for low power and high resolution on ink containing metallic nano-particle particles as pigments. The two laboratory-fabricated discrete and electrostatically actuated ink-jet heads, one made by poly dimethyl siloxane modeling process and other through micro-electrical discharge machine techniques, were compared, and their orifice outlet surface (hydrophobic and hydrophilic) condition influence has been discussed. The paper also investigates different dripping behaviors of metallic ink under the influence of counter electrode distance, voltages, and materials. The observation of droplet ejection with high-speed camera revealed that in the case of hydrophobic head, better meniscus shape and ejection was achieved even at low voltage compared to the hydrophilic head. It was also found that the less flow rate is required in hydrophobic head. Printing characteristic of the hydrophilic nozzle head was also compared with the hydrophobic head on PET substrate.
机译:在不包括微细加工光刻工艺的复杂步骤的情况下,在衬底表面上直接对金属内容物进行构图的兴趣日益增长。可以预期,使用静电喷墨打印的直接制造工艺将成为纳米技术研究和微电子等应用的强大工具。墨滴喷射电压,弯液面,锥形喷射行为和反电极距离取决于墨水属性,例如表面张力,粘度和金属颜料的百分比。本文研究和分析了由不同处理的表面材料组成的用于印刷电子的非接触式制造的2μm级针型静电头设计。测试了静电驱动的喷墨头,并比较了含有金属纳米粒子颗粒作为颜料的墨水的低功率和高分辨率。比较了两个实验室制造的离散和静电驱动喷墨头,一个是通过聚二甲基硅氧烷建模工艺制造的,另一个是通过微电放电机技术制造的,并讨论了它们对孔出口表面(疏水性和亲水性)状态的影响。 。本文还研究了在反电极距离,电压和材料的影响下金属墨水的不同滴落行为。用高速照相机观察液滴喷射发现,与亲水头相比,在疏水头的情况下,即使在低电压下也能获得更好的弯月面形状和喷射。还发现疏水头所需的流速较小。还比较了亲水性喷嘴头与疏水性头在PET基材上的印刷特性。

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