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Flow Characteristics of a Thermoset Fiber Composite Photopolymer Resin in a Vat Polymerization Additive Manufacturing Process

机译:热固性纤维复合光聚合物树脂在增值税聚合添加剂制造过程中的流动特性

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Additive manufacturing vat polymerization has become a leading technology and gained a massive amount of attention in industrial applications such as injection molding inserts. By the use of the thermoset polymerization process inserts have increased their market share. For most industrial applications, strength and stiffness are crucial factors to a successful implementation of cured photopolymer thermo sets. Hence, fiber-reinforced polymers have recently been introduced. The behavior and especially orientation of fibers during the vat photopolymerization process has yet not been fully understood. Research indicates an orientation within the manufacturing layer and efforts have been made to achieve a more uniform orientation within the part. A vat polymerization machine consisting of a resin vat and a moving build plate has been simulated using the fluid flow module of Comsol Multiphysics?. A moving mesh with hyper-elastic behavior was utilized to simulate the flow of the photopolymer during the lifting of the build plate after a successful curing of a single layer. The velocity profile can thereafter be used to estimate a prediction for the orientation of the short fibers added to the liquid photopolymer resin. The prediction can be used to identify potential clusters or misalignment of fibers and in the future allow for optimization of the machine design and manufacturing process.
机译:添加剂制造增值税聚合已成为一种领先的技术,并在工业应用中获得了诸如注塑插入件的产业应用量的大量关注。通过使用热固性聚合过程,插入件增加了他们的市场份额。对于大多数工业应用,强度和僵硬是成功实施固化的光聚合物热结构的重要因素。因此,最近介绍了纤维增强聚合物。纤维在增值税光聚合过程中的行为和特别取向尚未得到完全理解。研究表明制造层内的取向和已经使努力实现在该部分内的更均匀的取向。使用COMSOL Multiphysics的流体流量模块模拟了由树脂VAT和移动构建板组成的VAT聚合机。利用具有超弹性行为的移动网格来模拟在成功固化单层之后在升降构建板期间光聚合物的流动。此后可以使用速度分布来估计对添加到液体光聚合物树脂的短纤维的取向的预测。预测可用于识别纤维的潜在簇或不对准,并在未来允许优化机器设计和制造过程。

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