Physics of Fluids Group and J. M. Burgers Centre for Fluid Dynamics, University of Twente, P.O. Box 217, 7500 AE Enschede, The Netherlands.
Soft Matter. 2018 Apr 25;14(16):3096-3104. doi: 10.1039/c7sm02540h.
Spreading and solidification of liquid droplets are elementary processes of relevance for additive manufacturing. Here we investigate the effect of heat transfer on spreading of a thermoresponsive solution (Pluronic F127) that undergoes a sol-gel transition above a critical temperature Tm. By controlling the concentration of Pluronic F127 we systematically vary Tm, while also imposing a broad range of temperatures of the solid and the liquid. We subsequently monitor the spreading dynamics over several orders of magnitude in time and determine when solidification stops the spreading. It is found that the main parameter is the difference between the substrate temperature and Tm, pointing to a local mechanism for arrest near the contact line. Unexpectedly, the spreading is also found to stop below the gelation temperature, which we attribute to a local enhancement in polymer concentration due to evaporation near the contact line.
液滴的铺展和固化是增材制造中具有重要意义的基本过程。在这里,我们研究了传热对热响应溶液(Pluronic F127)铺展的影响,该溶液在临界温度 Tm 以上经历溶胶-凝胶转变。通过控制 Pluronic F127 的浓度,我们系统地改变 Tm,同时对固体和液体施加广泛的温度范围。随后,我们在几个时间量级上监测铺展动力学,并确定何时固化停止铺展。结果发现,主要参数是基底温度与 Tm 之间的差异,这表明在接触线附近存在局部的停止机制。出乎意料的是,在凝胶化温度以下也发现了铺展的停止,我们将其归因于由于接触线附近的蒸发导致的聚合物浓度的局部增加。