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Inkjet printing of weakly elastic polymer solutions

机译:喷墨印刷弱弹性聚合物溶液

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摘要

Fluid assessment methods, requiring small volumes and avoiding the need for jetting, are particularly useful in the design of functional fluids for inkjet printing applications. With the increasing use of complex (rather than Newtonian) fluids for manufacturing, single frequency fluid characterisation cannot reliably predict good jetting behaviour, owing to the range of shearing and extensional flow rates involved. However, the scope of inkjet fluid assessments (beyond achievement of a nominal viscosity within the print head design specification) is usually focused on the final application rather than the jetting processes. The experimental demonstration of the clear insufficiency of such approaches shows that fluid jetting can readily discriminate between fluids assessed as having similar LVE characterisation (within a factor of 2) for typical commercial rheometer measurements at shearing rates reaching 10rads.Jetting behaviour of weakly elastic dilute linear polystyrene solutions, for molecular weights of 110-488. kDa, recorded using high speed video was compared with recent results from numerical modelling and capillary thinning studies of the same solutions.The jetting images show behaviour ranging from near-Newtonian to "beads-on-a-string". The inkjet printing behaviour does not correlate simply with the measured extensional relaxation times or Zimm times, but may be consistent with non-linear extensibility L and the production of fully extended polymer molecules in the thinning jet ligament.Fluid test methods allowing a more complete characterisation of NLVE parameters are needed to assess inkjet printing feasibility prior to directly jetting complex fluids. At the present time, directly jetting such fluids may prove to be the only alternative.
机译:需要小体积并且避免喷射的流体评估方法在设计用于喷墨印刷应用的功能流体时特别有用。随着越来越多地使用复杂(而不是牛顿)流体进行制造,由于所涉及的剪切和扩展流速范围较大,单频流体表征无法可靠地预测良好的喷射行为。但是,喷墨流体评估的范围(超出在打印头设计规范中达到的标称粘度)通常集中在最终应用而不是喷射过程上。这种方法明显不足的实验表明,对于典型的商业流变仪测量,在达到10rads的剪切速率时,流体喷射可以轻松地区分被评估为具有类似LVE特征(在2的因子之内)的流体。聚苯乙烯溶液,分子量为110-488。使用高速视频记录的kDa与相同解决方案的数值建模和毛细管稀化研究的最新结果进行了比较。喷射图像显示了从近牛顿到“串珠”的行为。喷墨打印行为与所测得的拉伸弛豫时间或Zimm时间并不简单相关,但可能与非线性扩展性L和稀释射流韧带中完全扩展的聚合物分子的产生相一致。流体测试方法可实现更完整的表征在直接喷射复杂流体之前,需要使用NLVE参数的整数来评估喷墨打印的可行性。目前,直接喷射这种流体可能被证明是唯一的选择。

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