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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Time-Resolved Imaging Study of Jetting Dynamics during Laser Printing of Viscoelastic Alginate Solutions
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Time-Resolved Imaging Study of Jetting Dynamics during Laser Printing of Viscoelastic Alginate Solutions

机译:粘弹性藻酸盐溶液激光印刷过程中喷射动力学的时间分辨成像研究

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摘要

Matrix-assisted pulsed-laser evaporation direct-write (MAPLE DW) has been successfully implemented as a promising laser printing technology for various fabrication applications, in particular, three-dimensional bioprinting. Since most bioinks used in bioprinting are viscoelastic, it is of importance to understand the jetting dynamics during the laser printing of viscoelastic fluids in order to control and optimize the laser printing performance. In this study, MAPLE DW was implemented to study the jetting dynamics during the laser printing of representative viscoelastic alginate bioinks and evaluate the effects of operating conditions (e.g., laser fluence) and material properties (e.g., alginate concentration) on the jet formation performance. Through a time-resolved imaging approach, it is found that when the laser fluence increases or the alginate concentration decreases, the jetting behavior changes from no material transferring to well-defined jetting to well-defined jetting with an initial bulgy shape to jetting with a bulgy shape to pluming/splashing. For the desirable well-defined jetting regimes, as the laser fluence increases, the jet velocity and breakup length increase while the breakup time and primary droplet size decrease. As the alginate concentration increases, the jet velocity and breakup length decrease while the breakup time and primary droplet size increase. In addition, Ohnesorge, elasto-capillary, and Weber number based phase diagrams are presented to better appreciate the dependence of jetting regimes on the laser fluence and alginate concentration.
机译:矩阵辅助脉冲激光蒸发直接写入(MAPLE DW)已成功实现为各种制造应用(尤其是三维生物打印)中很有希望的激光打印技术。由于生物打印中使用的大多数生物墨水都是粘弹性的,因此重要的是了解在粘弹性流体的激光打印过程中的喷射动力学,以控制和优化激光打印性能。在这项研究中,MAPLE DW用于研究具有代表性的粘弹性藻酸盐生物墨水的激光打印过程中的喷射动力学,并评估操作条件(例如激光通量)和材料特性(例如藻酸盐浓度)对喷射形成性能的影响。通过时间分辨成像方法,发现当激光通量增加或藻酸盐浓度降低时,喷射行为从没有材料转移到轮廓分明的喷射到具有初始凸起形状的轮廓分明的喷射转变为带有凸起的形状。鼓起的形状,以垂垂/飞溅。对于理想的定义良好的喷射方式,随着激光通量的增加,喷射速度和破碎长度增加,而破碎时间和初级液滴尺寸减小。随着藻酸盐浓度的增加,射流速度和破碎长度减小,而破碎时间和初级液滴尺寸增加。此外,还提供了基于Ohnesorge,弹性毛细管和Weber数的相图,以更好地了解喷射方式对激光通量和藻酸盐浓度的依赖性。

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