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Visible Light Photoinitiator for 3D-Printing of Tough Methacrylate Resins

机译:可见光光引发剂用于艰难的甲基丙烯酸酯树脂的3D打印

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摘要

Lithography-based additive manufacturing was introduced in the 1980s, and is still the method of choice for printing accurate plastic parts with high surface quality. Recent progress in this field has made tough photopolymer resins and cheap LED light engines available. This study presents the influence of photoinitiator selection and post-processing on the thermomechanical properties of various tough photopolymers. The influence of three photoinitiators (Ivocerin, BAPO, and TPO-L) on the double-bond conversion and mechanical properties was investigated by mid infrared spectroscopy, dynamic mechanical analysis and tensile tests. It was found that 1.18 wt % TPO-L would provide the best overall results in terms of double-bond conversion and mechanical properties. A correlation between double-bond conversion, yield strength, and glass transition temperature was found. Elongation at break remained high after post-curing at about 80–100%, and was not influenced by higher photoinitiator concentration. Finally, functional parts with 41 MPa tensile strength, 82% elongation at break, and 112 °C glass transition temperature were printed on a 405 nm DLP (digital light processing) printer.
机译:基于光刻的增材制造技术于1980年代问世,仍然是印刷具有高表面质量的精确塑料零件的首选方法。该领域的最新进展已使高强度的光敏聚合物树脂和廉价的LED光引擎可用。这项研究提出了光引发剂的选择和后处理对各种韧性光敏聚合物热机械性能的影响。通过中红外光谱,动态力学分析和拉伸试验研究了三种光引发剂(Ivocerin,BAPO和TPO-L)对双键转化率和力学性能的影响。已经发现,就双键转化率和机械性能而言,1.18wt%的TPO-L将提供最佳的总体结果。发现双键转化率,屈服强度和玻璃化转变温度之间的相关性。后固化后的断裂伸长率仍然很高,约为80-100%,并且不受较高光引发剂浓度的影响。最后,将具有41 MPa拉伸强度,82%断裂伸长率和112°C玻璃化转变温度的功能部件印刷在405 nm DLP(数字光处理)打印机上。

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