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Control of the Particle Distribution in Inkjet Printing through an Evaporation-Driven Sol-Gel Transition

机译:通过蒸发驱动的溶胶凝胶转变控制喷墨打印中的颗粒分布

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A ring stain is often an undesirable consequence of droplet drying. Particles inside evaporating droplets with a pinned contact line are transported toward the periphery by radial flow. In this paper, we demonstrate how suspensions of laponite can be used to control the radial flow inside picoliter droplets and produce uniform deposits. The improvement in homogeneity arises from a sol-gel transition during evaporation. Droplets gel from the contact line inward, reducing the radial motion of particles and thus inhibiting the formation of a ring stain. The internal flows and propagation of the gelling front were followed by high-speed imaging of tracer particles during evaporation of the picoliter droplets of water. In the inkjet nozzle, the laponite network is broken down under high shear. Recovery of the low shear viscosity of laponite suspensions was shown to be fast with respect to the lifetime of the droplet, which was instrumental in controlling the deposit morphology. The radial and vertical particle distributions within dried deposits were measured for water droplets loaded with 1 and S wt % polystyrene spheres and various concentrations of laponite. Aggregation of the polystyrene spheres was suppressed by the addition of colloidal silica. The formulation can be tuned to vary the deposit profile from a ring to a pancake or a dome.
机译:环形污点通常是液滴干燥的不良结果。具有固定接触线的蒸发液滴内部的粒子通过径向流向周围传输。在本文中,我们演示了如何将合成锂皂石悬浮液用于控制微微升液滴内部的径向流动并产生均匀的沉积物。均质性的提高来自蒸发过程中的溶胶-凝胶转变。液滴从接触线向内凝结,减少了颗粒的径向运动,从而抑制了环形污渍的形成。在微微升水滴蒸发期间,内部流动和胶凝前沿的传播随后是示踪剂颗粒的高速成像。在喷墨喷嘴中,皂石网络在高剪切力作用下破裂。相对于液滴的寿命,锂皂石悬浮液的低剪切粘度的恢复被证明是快速的,这有助于控制沉积物的形态。对于装载了1%和S wt%的聚苯乙烯球以及各种浓度的合成锂皂石的水滴,测量了干燥沉积物中的径向和垂直颗粒分布。通过添加胶体二氧化硅抑制了聚苯乙烯球的聚集。可以调整配方,以改变沉积物的形状,从圆环到薄煎饼或圆顶。

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