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Links Between Ink Rheology, Drop-on-Demand Jet Formation, and Printability

机译:油墨流变学,按需喷墨形成和可印刷性之间的联系

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This article links measurements of ink jetting performance in drop-on-demand printing with the high-frequency rheologi-cal properties of model viscoelastic fluids containing linear polymers with various molecular weights. Jet formation and evolution were studied for solutions of polystyrene in diethyl phthalate. Ligament length, initial jet ejection speeds, and ligament extension and retraction rates were determined by high-resolution imaging with high time resolution. For these fluids, the viscosity measured under low shear-rate conditions showed no correlation with their jetting performance. The jetting behavior was, however, well correlated with high frequency rheological properties measured at 5 kHz using a piezoelectric axial vibrator rheometer. This study shows that high frequency rheometry can provide useful predictive data about the jettability of fluids, and differentiate between inks that have similar low shear-rate viscosity yet show different jetting behavior. A phenomenologi-cal model has been proposed and fitted to the evolution of the average ligament length from emergence, through break-up and into the final state of unmerged drops and associated satellites in order to help discuss the influence of viscoelastic behavior on the fixed speed drop-on-demand jetting and printability of fluids. The values of the parameters of this model obtained from the fitting are shown to have a consistent correlation with the rheological properties of the jetted fluids.
机译:本文将按需滴印中喷墨性能的测量与包含各种分子量线性聚合物的模型粘弹性流体的高频流变特性联系起来。研究了聚苯乙烯在邻苯二甲酸二乙酯中的射流形成和演变。韧带长度,初始射流喷射速度以及韧带伸展和收缩率通过具有高时间分辨率的高分辨率成像来确定。对于这些流体,在低剪切速率条件下测得的粘度与它们的喷射性能无关。但是,喷射行为与使用压电轴向振动器流变仪在5 kHz下测得的高频流变特性有很好的相关性。这项研究表明,高频流变学可以提供有关流体喷射性的有用预测数据,并可以区分具有相似低剪切速率粘度但表现出不同喷射行为的油墨。提出了一种现象模型,并将其拟合为平均韧带长度从出现,破裂到未合并液滴和相关卫星最终状态的演变,以帮助讨论粘弹性行为对固定速度的影响。按需喷射和流体可印刷性。从拟合中获得的该模型的参数值显示与喷射流体的流变特性具有一致的相关性。

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  • 来源
    《Journal of Imaging Science and Technology 》 |2009年第4期| 69-76| 共8页
  • 作者单位

    Department of Engineering, Institute for Manufacturing, University of Cambridge, Mill Lane, Cambridge CB2 IRK, United Kingdom;

    Department of Engineering, Institute for Manufacturing, University of Cambridge, Mill Lane, Cambridge CB2 IRK, United Kingdom;

    Department of Engineering, Institute for Manufacturing, University of Cambridge, Mill Lane, Cambridge CB2 IRK, United Kingdom;

    Department of Chemical Engineering, University of Cambridge, Pembroke Street, Cambridge CB2 3RA, United Kingdom;

    Department of Chemical Engineering, University of Cambridge, Pembroke Street, Cambridge CB2 3RA, United Kingdom;

    Department of Chemical Engineering, University of Cambridge, Pembroke Street, Cambridge CB2 3RA, United Kingdom;

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