Rheological and Kinetic Characterization of UV Photopolymerizable Formulations as a Function of the Boehmite Nanoparticle Content

M. Frigione, C. E. Corcione
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引用次数: 7

Abstract

Several innovative photopolymerizable siloxane-modified acrylic formulations were characterized, both in presence or absence of organically Boehmite (OMB) nanoparticles, in order to assess their rheological and kinetic behavior. The experimental formulations were mainly intended for the surface protection of porous stones or wood elements. The importance of the experimental investigation lies in the specific requirements necessary for the proposed applications, i.e. the innovative UV coatings developed should possess adequate viscosity, photopolymerization reaction rate and time. The kinetics of the radical photopolymerization mechanism, induced by UV radiations, was studied by calorimetric analysis and FTIR spectroscopy as function of the mixtures composition and test conditions (air or nitrogen atmosphere). The addition of a silane coupling agent or a high molecular weight polysiloxane monomer to the acrylic resin was found to reduce the heat of reaction. On the other hand, the presence of Boehmite nanoparticles in the UV photopolymerizable formulations does not seem to modify the reactivity of the siloxane-modified acrylic formulations. The effect of the presence of oxygen on the kinetic reaction was also investigated and correlated to the composition of the systems. Finally, the viscosity of the formulations was studied at ambient temperature with a parallel plates rheomether as a function of composition and shear rate. The viscosity curves were also fitted according to theoretical models as function of shear rate and composition, obtaining a good agreement between experimental data and model predictions.
紫外光聚合配方的流变性和动力学表征与纳米薄水铝石含量的关系
研究了几种新型的光聚合硅氧烷改性丙烯酸酯配方,无论是否含有有机薄水镁(OMB)纳米颗粒,以评估其流变学和动力学行为。实验配方主要用于多孔石材或木材元件的表面保护。实验研究的重要性在于所提出的应用所需的具体要求,即所开发的创新UV涂料应具有足够的粘度,光聚合反应速率和时间。通过量热分析和FTIR光谱研究了紫外辐射诱导自由基光聚合机理的动力学,并将其作为混合物组成和测试条件(空气或氮气气氛)的函数。在丙烯酸树脂中加入硅烷偶联剂或高分子量的聚硅氧烷单体可以降低反应热。另一方面,紫外光聚合配方中薄水铝石纳米颗粒的存在似乎并没有改变硅氧烷改性丙烯酸配方的反应性。研究了氧的存在对反应动力学的影响,并将其与体系的组成联系起来。最后,用平行板流变仪在室温下研究了配方的粘度随组分和剪切速率的变化规律。根据理论模型对黏度曲线进行了剪切速率和组分的拟合,实验数据与模型预测吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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