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High viscose ink jetting by using nScrypt Head and application

机译:使用nScrypt头的高粘度喷墨和应用

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摘要

For small and flexible electronics appliances, viscosity of nano ink is one of the crucial factors in practical applicating. Monodispersed nano sized particles were used to make conductive pattern without leading clogging when ink jetting process. However, in order to achieve commercially functional devices, the ink jetting and post heat-treating needed to be repeated to obtain minimum conductivity for devices for the successful application the direct writable inks need high conductivity and high packing density for one-touch patterning. In this study, the direct writing mechanism; sequential method and randomized method are defined and in which thick layer with high viscous materials using one touch patterning process were introduced. Random and sequential packing concept has been successfully proved to the nano size particle patterning in various direct write tools such as ink jet, aerosol and micro dispensing. The ideal liquid structure used spherical random packing simulation can predict the packing density of direct writing patterns using ink-jet process and micro dispensing process for high viscous ink.
机译:对于小型且柔性的电子设备,纳米墨水的粘度是实际应用中的关键因素之一。在喷墨过程中,单分散的纳米级颗粒用于制作导电图案而不会导致堵塞。然而,为了获得具有商业功能的设备,需要重复喷墨和后热处理以获得对于成功应用的设备而言最小的导电性,直接可写墨水需要高导电性和高填充密度以进行一键式图案化。在这项研究中,直接写作机制;定义了顺序法和随机法,并介绍了采用一次触摸图案化工艺的具有高粘性材料的厚层。在各种直接写入工具(例如喷墨,气雾剂和微量点胶)中,纳米尺寸的颗粒图案已成功证明了随机和顺序填充的概念。理想的液体结构采用球形随机堆积模拟,可以通过喷墨工艺和微点胶工艺预测高粘性墨水的直写图案的堆积密度。

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