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Investigations on cure kinetics and thermal degradation of stereolithography Renshape (TM) 5260 photosensitive resin

机译:立体光刻Renshape(TM)5260光敏树脂的固化动力学和热降解研究

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The stereolithography resin Renshape(TM) 5260 was characterized by infrared and nuclear magnetic resonance spectroscopy, indicating the presence of epoxy and acrylic reactive groups as well as aromatic and aliphatic ether groups. Infrared spectroscopy was also used to evaluate the curing process and identify the components of the thermal degradation of liquid and cured resins. Kinetics studies indicated that this solvent-free polymerization was diffusion-controlled during the chemical crosslinking, due to the reaction order of the curing process. The cured resin had only one degradation stage with activation energy of 90-250 kJ mol(-1) in the weight loss fraction of 0.10-0.92, whereas a second degradation stage was observed for the liquid resin above the 0.6 weight loss fraction. This second degradation stage gives E-a values in the range of 70-140 kJ mol(-1). The higher weight loss temperature of the cured resin compared with the liquid resin and the single decomposition stage observed for the former suggest a different decomposition mechanism and stability of the cured resin at higher temperatures compared to the liquid resin. (C) 2008 Elsevier Ltd. All rights reserved.
机译:立体光刻树脂Renshape TM 5260的特征在于红外和核磁共振波谱,表明存在环氧和丙烯酸反应性基团以及芳族和脂族醚基。红外光谱还用于评估固化过程并确定液体和固化树脂热降解的成分。动力学研究表明,由于固化过程的反应顺序,这种无溶剂聚合在化学交联过程中受到扩散控制。固化的树脂只有一个降解阶段,其失重分数为0.10-0.92,活化能为90-250 kJ mol(-1),而液态树脂的失重分数大于0.6时,观察到第二个降解阶段。该第二降解阶段的E-a值在70-140 kJ mol(-1)的范围内。与液态树脂相比,固化树脂的重量损失温度更高,并且前者观察到的单一分解阶段表明,与液态树脂相比,固化树脂在更高温度下的分解机理和稳定性不同。 (C)2008 Elsevier Ltd.保留所有权利。

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