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Simulation & modelling of dilute solutions in drop-on-demand inkjet printing: a review

机译:浅谈稀释解决方案的仿真与造型喷墨印刷:综述

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This review is about the most important matters for advancing inkjet printing with a focus on piezoelectric droplet on demand (DOD) inkjet thin-film devices. The Nano material compounds can be incorporated into a polymeric matrix and deposited by piezoelectric inkjet printing. Current problems in advanced printers are discussed as embodied in liquid filament breakup along with satellite droplet formation and reduction in droplet sizes. Various model that predicts the printability of dilute, mono disperse polymer solutions in drop-on-demand "DOD" inkjet printing have been discussed. For satellite droplets, it is exhibited which liquid filament break-up treatment can be predicted via using a combination of two pi-numbers, including the Weber number. The layer was printed over other printed layers including electrodes composed of the conductive polymers and also several polymers. It has been discussed, some polymer ' materials are suitable for deposition and curing at low to moderate temperatures and atmospheric pressure, allowing for the use of polymers or paper as supportive substrates for the devices, and greatly facilitating the fabrication process. Furthermore, through this review, it has been discussed scaling analyses for designing and operating of inkjet heads. Because of droplet sizes from inkjet nozzles are typically on the order of nozzle dimensions, a numerical simulation is shown for explaining how to reduce droplet sizes through employing a novel input waveform impressed on the inkjet-head liquid inflow without changing the nozzle geometries. Regardless of t their any less performance, inkjet printer head as a technique for the mentioned devices presents many advantages, the most notable of which are quickly fabricating and patterning, substrate flexibilities, avoidance of material wastage via applying "DoD" technologies.
机译:本综述是关于推进喷墨印刷的最重要的事项,重点是压电液滴按需(DOD)喷墨薄膜装置。纳米材料化合物可以掺入聚合物基质中并通过压电喷墨印刷沉积。先进的打印机中的当前问题如液体长丝分解所体现的以及卫星液滴形成和液滴尺寸的减少。已经讨论了各种模型,其预测稀释的稀释性,单分散聚合物溶液在按需“DOD”喷墨印刷中。对于卫星液滴,展示可以通过使用两种PI级的组合来预测液体细丝分解处理,包括韦伯号。将该层印刷在包括由导电聚合物和几种聚合物组成的电极的其他印刷层上。已经讨论过,一些聚合物材料适用于低至中等温度和大气压的沉积和固化,允许使用聚合物或纸作为器件的支撑基板,并大大促进制造过程。此外,通过本综述,已经讨论了用于设计和操作喷墨头的缩放分析。由于来自喷墨喷嘴的液滴尺寸通常在喷嘴尺寸的顺序上,所示的数值模拟用于说明如何通过采用喷墨头液流入上的新颖输入波形来减少液滴尺寸而不改变喷嘴几何形状。无论其少的性能较低,喷墨打印机头作为所述装置的技术都具有许多优点,最重要的是,最重要的是,通过应用“国防部”技术,避免材料浪费,避免材料浪费的最具优势。

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