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Impact of Radiation Attenuation and Temperature Evolution on Monomer Conversion of Dimethacrylate-based Resins with a Photobleaching Photoinitiator

机译:辐射衰减和温度演化对光漂白光引发剂对二甲基丙烯酸酯类树脂单体转化的影响

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摘要

The photopolymerization process of a dimethacrylate copolymer system activated by the camphorquinone (CQ)/amine photoinitiator system (1 wt%), was experimentally studied under nonisothermal conditions in 1- and 2-mm thick samples by measuring double bond conversion, temperature rise and radiation attenuation through the sample during polymerization. The peak temperature in 1- or 2-mm thick samples irradiated at 5 mW/cm^sup 2^ was 29 and 38° C, respectively. The temperature evolution during polymerization was also predicted by solving the energy balance coupled with the kinetic expressions for the reaction rate. Radiation attenuation as a function of depth by the photobleachable CQ results in spatial and temporal variation in the local rates of the kinetic steps involved. General relationships for spatiotemporal variations in concentration of a photobleaching initiator, in systems where attenuation and initiator consumption are taken into account, were used to compute local polymerization rates. The effects of radiation attenuation, photobleaching of the photoinitiator and variation of cure temperature at different depths into the resin, all compete to determine the double bond consumption. The increased radiation attenuation in the 2-mm thick sample was accompanied by a higher cure temperature compared with the 1-mm thick sample, and as a result, the monomer conversion averaged over the sample thickness in the 1- and 2-mm thick samples was the same. Results obtained in this research highlight the inherent inter-linking of thermal and radiation attenuation effects in bulk photopolymerizing systems. [PUBLICATION ABSTRACT]
机译:在非等温条件下,通过测量双键转化率,温度升高和辐射,在非等温条件下对樟脑醌(CQ)/胺光引发剂体系(1 wt%)活化的二甲基丙烯酸酯共聚物体系的光聚合过程进行了实验研究。聚合过程中通过样品的衰减。在5 mW / cm 2 sup 2 ^下照射的1毫米或2毫米厚样品的峰值温度分别为29和38℃。还通过解决能量平衡以及反应速率的动力学表达式来预测聚合过程中的温度变化。可光漂白的CQ随深度而变的辐射衰减导致所涉及的动力学步骤的局部速率发生时空变化。在考虑了衰减和引发剂消耗的系统中,使用了光漂白引发剂浓度的时空变化的一般关系来计算局部聚合速率。辐射衰减,光引发剂的光致漂白和固化温度在进入树脂的不同深度的影响,都决定了双键的消耗。与1毫米厚的样品相比,在2毫米厚的样品中增加的辐射衰减伴随着更高的固化温度,因此,在1毫米和2毫米厚的样品中,样品转化率在整个样品厚度上平均是一样的。这项研究获得的结果突出了本体光聚合系统中热和辐射衰减效应的内在联系。 [出版物摘要]

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    《Polymer Engineering and Science》 |2009年第11期|p.2225-2233|共9页
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    Veronica Mucci,1 Wayne D. Cook,2 Claudia Vallo11 Instituto de Investigación en Ciencia y Tecnología de Materiales, Polymer Department,Mar del Plata University - National Research Council (CONICET), Argentina2 Department of Materials Engineering, Monash University, Melbourne, Victoria, AustraliaCorrespondence to: Claudia Vallo, e-mail: civallo@fi.mdp.edu.arContract grant sponsors: CONICET, ANPCyT.DOI 10.1002/pen.21460Published online in Wiley InterScience (www.interscience.wiley.com).© 2009 Society of Plastics Engineers,;

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