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Jetting behavior of polymer solutions in drop-on-demand inkjet printing

机译:聚合物溶液在按需喷墨印刷中的喷射行为

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摘要

The jetting of dilute polymer solutions in drop-on-demand printing is investigated. A quantitative model is presented which predicts three different regimes of behavior depending upon the jet Weissenberg number Wi and extensibility of the polymer molecules. In regime I (Wi), the polymer chains are relaxed and the fluid behaves in a Newtonian manner. In regime II (Wi L), where L is the extensibility of the polymer chain, the fluid is viscoelastic, but the chains do not reach their extensibility limit. In regime III (Wi > L), the chains remain fully extended in the thinning ligament. The maximum polymer concentration at which a jet of a certain speed can be formed scales with molecular weight to the power of (1-3ν), (1-6ν), and -2ν in the three regimes, respectively, where ν is the solvent quality coefficient. Experimental data obtained with solutions of monodisperse polystyrene in diethyl phthalate with molecular weights between 24 and 488 kDa, previous numerical simulations of this system, and previously published data for this and another linear polymer in a variety of good solvents, all show good agreement with the scaling predictions of the model.
机译:研究了按需滴印中稀聚合物溶液的喷射。提出了定量模型,该模型根据射流的魏森伯格数Wi和聚合物分子的可扩展性来预测三种不同的行为方式。在方案I(Wi)中,聚合物链松弛并且流体以牛顿方式表现。在方案II(Wi L)中,其中L是聚合物链的可延展性,流体是粘弹性的,但链未达到其可延展性极限。在方案III(Wi> L)中,链在稀疏韧带中保持完全伸展。在三种状态下,可形成一定速度的射流的最大聚合物浓度分别随分子量分别缩放为(1-3ν),(1-6ν)和-2ν的幂,其中ν是溶剂质量系数。用单分散聚苯乙烯在邻苯二甲酸二乙酯中的分子量为24至488 kDa的溶液获得的实验数据,该系统的先前数值模拟以及该出版物和另一种线性聚合物在各种良好溶剂中的先前发表的数据均显示与模型的缩放预测。

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