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用于液晶显示器3D打印双重固化的环氧基共混物配方:增强可打印性的热机械性能变化研究

Epoxy-Based Blend Formulation for Dual Curing in Liquid Crystal Display 3D Printing: A Study on Thermomechanical Properties Variation for Enhanced Printability.

作者信息

Tosto Claudio, Saitta Lorena, Latteri Alberta, Cicala Gianluca

机构信息

Department of Civil Engineering and Architecture, University of Catania, Viale Andrea Doria 6, 95125 Catania, Italy.

出版信息

Polymers (Basel). 2024 Jan 29;16(3):358. doi: 10.3390/polym16030358.

Abstract

The aim of this study was to explore the thermal properties of epoxy-acrylate blends for the liquid crystal display (LCD) 3D printing technique. Starting from an epoxy-acrylate blend with a ratio of epoxy to acrylate of 50:50, the effect of adding a reactive monofunctional epoxy diluent was evaluated. The diluent was a resin composed by oxirane, mono[(C12-14 alkyl) methyl] derivatives selected for its low viscosity (i.e., 1.8 Poise) at room temperature and its reactivity. The diluent content varied from 15 to 25 wt% and, for all the formulation, double curing cycles, where thermal curing followed photocuring, were studied. The effect of different curing temperatures was also evaluated. The control of the diluent content and of the curing temperature allowed tailoring of the thermomechanical resin properties while improving the resin's processability. The glass transition ranged from 115.4 °C to 90.8 °C depending on the combination of diluent content and post-curing temperature. The resin developed displayed a faster processing time tested on a reference part with printing time of 4 h and 20 min that was much lower than the printing times (7 and 16 h) observed for the starting formulations.

摘要

本研究的目的是探索用于液晶显示器(LCD)3D打印技术的环氧丙烯酸酯共混物的热性能。从环氧与丙烯酸比例为50:50的环氧丙烯酸酯共混物开始,评估添加反应性单官能环氧稀释剂的效果。该稀释剂是一种由环氧乙烷、单[(C12 - 14烷基)甲基]衍生物组成的树脂,因其在室温下的低粘度(即1.8泊)及其反应性而被选用。稀释剂含量在15至25 wt%之间变化,并且对于所有配方,研究了热固化后接光固化的双固化循环。还评估了不同固化温度的影响。通过控制稀释剂含量和固化温度,可以调整热机械树脂性能,同时提高树脂的加工性能。根据稀释剂含量和后固化温度的组合,玻璃化转变温度范围为115.4℃至90.8℃。所开发的树脂在一个参考部件上测试显示出更快的加工时间,打印时间为4小时20分钟,远低于起始配方观察到的打印时间(7小时和16小时)。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b958/10857280/f98ec1ee3b24/polymers-16-00358-g001.jpg

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