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Impulse acoustics based ejection of ferrofluid grains from a ferrofluid: the blueprint of a concept for a nozzle-free inkjet printer

机译:基于脉管流体的脉冲流体爆发的脉冲流体:无射精喷墨打印机概念的蓝图

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We present numerical simulations to demonstrate that it may be possible to eject ferrofluid grains from a ferrofluid using non-linear acoustic impulses. The study considers a container with some dilute ferrofluid that is placed in a strong, vertical, homogeneous magnetic field. The field induces the formation of magnetic dipoles into vertical chains that approximately span the region between the base and the surface of the container. We use particle dynamical simulations to show that an impulse generated at the base of any chain, will typically travel as a weakly dispersive bundle of energy. When the impulse magnitudes are appropriate (typically ~60 m/s or more) the ferrofluid grain nearest to the surface of the liquid may be ejected by the impulse. Since all ferrofluid grains possess a coating of the liquid host, the ejected grain can be used as an ink-drop, with typical diameter of 15 or so nanometers. The velocities of the ejecting grains can be controlled and hence the method, if experimentally feasible, may have wide ranging applications. One of these applications is likely to be in designing special-purpose nozzle-free inkjet printers of unprecedented resolution.
机译:我们呈现数值模拟,以证明可以使用非线性声学脉冲从铁磁流体中喷射芳烃流体谷物。该研究考虑了具有一些稀释的铁物流体的容器,该稀释剂流体置于强,垂直,均匀的磁场中。该场诱导磁偶极物的形成到垂直链中,垂直链近似跨越底座和容器表面之间的区域。我们使用粒子动态模拟来表明在任何链底部产生的脉冲,通常将作为弱分散的能量行进。当脉冲幅度适当时(通常为约60m / s或更高)时,可以通过脉冲喷射到液体表面的熔融流体谷物。由于所有铁磁流体晶粒具有液体孔的涂层,因此喷射的颗粒可用作墨滴,典型的直径为15〜如此。可以控制弹出晶粒的速度,从而控制该方法,如果实验可行,可能具有广泛的测距应用。其中一个应用可能是设计前所未有的分辨率的专用喷嘴喷墨打印机。

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