Einat Moshe
Faculty of Engineering, Ariel University, Ariel 40700, Israel.
Micromachines (Basel). 2016 Nov 7;7(11):202. doi: 10.3390/mi7110202.
Three dimensional (3D) printing technology is rapidly evolving such that printing speed is now a crucial factor in technological developments and future applications. For printing heads based on the inkjet concept, the number of nozzles on the print head is a limiting factor of printing speed. This paper offers a method to practically increase the number of nozzles unlimitedly, and thus to dramatically ramp up printing speed. Fluid reservoirs are used in inkjet print heads to supply fluid through a manifold to the jetting chambers. The pressure in the reservoir's outlet is important and influences device performance. Many efforts have been made to regulate pressure inside the fluid reservoirs so as to obtain a constant pressure in the chambers. When the number of nozzles is increased too much, the regulation of uniform pressure among all the nozzles becomes too complicated. In this paper, a different approach is taken. The reservoir is divided into an array of many micro-reservoirs. Each micro-reservoir supports one or a few chambers, and has a unique structure with auto-pressure regulation, where the outlet pressure is independent of the fluid level. The regulation is based on auto-compensation of the gravity force and a capillary force having the same dependence on the fluid level; this feature is obtained by adding a wedge in the reservoir with a unique shape. When the fluid level drops, the gravitational force and the capillary force decrease with it, but at similar rates. Terms for the force balance are derived and, consequently, a constant pressure in the fluid micro-reservoir segment is obtained automatically, with each segment being autonomous. This micro reservoir array is suggested for the enlargement of an inkjet print head and the achievement of high-speed 3D printing.
三维(3D)打印技术正在迅速发展,以至于打印速度现已成为技术发展和未来应用的关键因素。对于基于喷墨概念的打印头而言,打印头上喷嘴的数量是打印速度的限制因素。本文提供了一种切实可行的方法来无限增加喷嘴数量,从而大幅提高打印速度。喷墨打印头中使用储液器通过歧管向喷射腔供应流体。储液器出口处的压力很重要,会影响设备性能。人们已经做出了许多努力来调节储液器内部的压力,以便在腔室内获得恒定压力。当喷嘴数量增加过多时,所有喷嘴之间均匀压力的调节就会变得过于复杂。在本文中,采用了一种不同的方法。将储液器划分为许多微储液器阵列。每个微储液器为一个或几个腔室提供支持,并具有独特的自动压力调节结构,其出口压力与液位无关。这种调节基于重力和毛细力对液位具有相同依赖性的自动补偿;通过在储液器中添加具有独特形状的楔形物来实现这一特性。当液位下降时,重力和毛细力也随之下降,但下降速率相似。推导了力平衡的条件,从而自动在流体微储液器段中获得恒定压力,每个段都是独立的。建议使用这种微储液器阵列来扩大喷墨打印头并实现高速3D打印。