论文标题

尺寸影响对光聚合及其光学监测原位的影响

Impact of size effects on photopolymerization and its optical monitoring in-situ

论文作者

Camposeo, Andrea, Arkadii, Aristein, Romano, Luigi, D'Elia, Francesca, Fabbri, Filippo, Zussman, Eyal, Pisignano, Dario

论文摘要

在基于光曝光的3D打印技术中利用光聚合过程,其中聚焦的激光束或图案光片可以固化紫外可固化的液体预溶液层的层。在这里,我们关注层厚度在光聚合中的至关重要的(尽管经常被忽略)。通过光学系统研究了聚合反应的时间演变,该反应发生在丙烯酸酯基寡聚物的液滴以及具有变化厚度的光震鼠膜中,这是通过光学系统研究的,该光学系统是专门为现场和实时监测设计的。发现完全固化所需的时间会增加,因为聚合体积的减小低于取决于特定反应途径的特征阈值。通过通过尺寸依赖性聚合速率对过程进行建模来合理化此行为。我们的研究强调,无论特定的固化机制如何,光聚合网络的形成可能会受到涉及量的影响,这可能在优化基于光电的基于光化的添加剂制造方面起着至关重要的作用。

Photopolymerization processes are exploited in light exposure-based 3D printing technologies, where either a focused laser beam or a patterned light sheet allows layers of a UV curable, liquid pre-polymer to be solidified. Here we focus on the crucial, though often neglected, role of the layer thickness on photopolymerization. The temporal evolution of polymerization reactions occurring in droplets of acrylate-based oligomers and in photoresist films with varied thickness is investigated by means of an optical system, which is specifically designed for in-situ and real-time monitoring. The time needed for complete curing is found to increase as the polymerization volume is decreased below a characteristic threshold that depends on the specific reaction pathway. This behavior is rationalized by modelling the process through a size-dependent polymerization rate. Our study highlights that the formation of photopolymerized networks might be affected by the involved volumes regardless of the specific curing mechanisms, which could play a crucial role in optimizing photocuring-based additive manufacturing.

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