材料科学
静态混合器
色散(光学)
预聚物
粒径
混合(物理)
剪切(地质)
复合材料
剪切速率
分散稳定性
剪切流
流变学
聚氨酯
化学工程
机械
光学
聚合物
粘度
工程类
物理
量子力学
作者
Sven Gobert,Arne Vancleef,Seppe Clercx,Leen Braeken,Leen C.J. Thomassen
出处
期刊:ACS omega
[American Chemical Society]
日期:2021-09-28
卷期号:6 (40): 25884-25891
被引量:3
标识
DOI:10.1021/acsomega.1c01525
摘要
UV-curable polyurethane dispersions (UV-PUDs) have applications in coatings for a variety of materials. Historically, the neutralization and dispersion steps of the UV-PUD production process have been performed in batch. However, continuous processing might reduce capital and operating costs, improve the dispersion characteristics, and facilitate scale-up. Static mixers and inline high-shear mixers are able to provide the necessary shear forces to obtain miniemulsions. The production of a UV-PUD is therefore studied in a continuous setup, whereby the neutralization step is performed in static mixers and the dispersion step is performed either in static mixers or in a high-shear mixer. The influence of the prepolymer temperature, mixing energy, and feed flow rate on the particle size and stability of the UV-PUD particles in water is explored. The results show that the neutralization step is mixing-sensitive, and the temperature of the neutralized prepolymer influences the particle size in the dispersion process. The amount of shear force applied during the dispersion step has a limited effect on the particle size. UV-PU dispersions with an average particle size below 80 nm and PDI below 0.1 are obtained with static mixers or in an inline rotor-stator mixer, at flow rates of 5.2 and 7.2 L/h, respectively. This research demonstrates that continuous processing using static mixers and high-shear mixing is a viable option for the neutralization and dispersion of UV-PUDs.
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