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用于3D打印的金属(铁)聚合物复合材料中光热双重聚合的增强疗效和固化深度建模

Modeling the Enhanced Efficacy and Curing Depth of Photo-Thermal Dual Polymerization in Metal (Fe) Polymer Composites for 3D Printing.

作者信息

Lin Jui-Teng, Lee Yi-Ze, Lalevee Jacques, Kao Chia-Hung, Lin Kuan-Han, Cheng Da-Chuan

机构信息

Medical Photon Inc., New Taipei City 242, Taiwan.

Department of Electrical and Engineering, National Taiwan University, Taipei 100, Taiwan.

出版信息

Polymers (Basel). 2022 Mar 14;14(6):1158. doi: 10.3390/polym14061158.

Abstract

This article presents, for the first time, the efficacy and curing depth analysis of photo-thermal dual polymerization in metal (Fe) polymer composites for 3D printing of a three-component (A/B/M) system based on the proposed mechanism of our group, in which the co initiators A and B are Irgacure-369 and charge-transfer complexes (CTC), respectively, and the monomer M is filled by Fe. Our formulas show the depth of curing (Zc) is an increasing function of the light intensity, but a decreasing function of the Fe and photoinitiator concentrations. Zc is enhanced by the additive [B], which produces extra thermal radical for polymerization under high temperature. The heat (or temperature) increase in the system has two components: (i) due to the light absorption of Fe filler and (ii) heat released from the exothermic photopolymerization of the monomer. The heat is transported to the additive (or co-initiator) [B] to produce extra radicals and enhance the monomer conversion function (CF). The Fe filler leads to a temperature increase but also limits the light penetration, leading to lower CF and Zc, which could be overcome by the additive initiator [B] in thick polymers. Optimal Fe for maximal CF and Zc are explored theoretically. Measured data are analyzed based on our derived formulas.

摘要

本文首次基于本课题组提出的机理,对用于三元(A/B/M)体系3D打印的金属(Fe)聚合物复合材料中的光热双聚合的效果及固化深度进行了分析。其中,共引发剂A和B分别为Irgacure - 369和电荷转移络合物(CTC),单体M由Fe填充。我们的配方表明,固化深度(Zc)是光强的增函数,但却是Fe和光引发剂浓度的减函数。添加剂[B]可增强Zc,其在高温下会产生额外的热自由基用于聚合反应。体系中的热量(或温度)增加有两个因素:(i)由于Fe填料的光吸收,以及(ii)单体光聚合放热释放的热量。热量传递至添加剂(或共引发剂)[B]以产生额外的自由基,并增强单体转化率函数(CF)。Fe填料会导致温度升高,但也会限制光的穿透,从而导致较低的CF和Zc,而在厚聚合物中添加剂引发剂[B]可克服这一问题。理论上探索了实现最大CF和Zc的最佳Fe用量。基于我们推导的公式对实测数据进行了分析。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f1f8/8949539/b7bb481a311d/polymers-14-01158-g001.jpg

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