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Biobased Technology for Improving UV-Curable Polyurethane Dispersions and Urethane Acrylates

机译:生物基技术,可改善可紫外线固化的聚氨酯分散体和聚氨酯丙烯酸酯

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摘要

The developments of polyurethane dispersions and radiation curing techniques come together in UV-curable polyurethane dispersions(UV-PUD) . The industry has welcomed the combination of the two techniques. The polyurethane dispersions technology gives the freedqm of choice in the application, and high mechanical and chemical resistance. Furthermore a tack-free coating can be achieved before the UV curing, and the higher molecular weights of these UV-PUDs induce a lower shrinkage which leads to better adhesion. Their low viscosity compared to other UV formulations makes them ideal for spray applications. Moreover no co-solvents, reactive thinners or acrylic monomers are used which minimizes the effect on health and environment.rnThe more critical application conditions for UV-PUD's, such as the removal of the water by a pre-drying step, and poor hydrolytic stability, are seen as an important drawback.rnWe have countered these deficits through a range of hydrolytically stable polyester polyols based on dimerised fatty acids.rnIn this paper, it is first demonstrated that the polyester polyols improve the hydrolytic stability of conventional polyurethane dispersions. Subsequently, we present results showing that properties of the conventional polyurethane dispersions can be translated to UV-curable polyurethane dispersions and their coatings. Additionally influences of the technology on urethane acrylate systems with respect to the adhesion were evaluated.
机译:紫外光可固化聚氨酯分散体(UV-PUD)中聚氨酯分散体和辐射固化技术的发展融为一体。业界欢迎两种技术的结合。聚氨酯分散体技术为应用提供了自由选择的选择,并具有很高的机械和化学耐性。此外,可以在UV固化之前获得无粘性的涂层,并且这些UV-PUD的较高分子量导致较低的收缩率,从而导致更好的附着力。与其他紫外线配方相比,它们的低粘度使其非常适合喷涂应用。此外,不使用助溶剂,反应性稀释剂或丙烯酸类单体,从而将对健康和环境的影响降至最低。rnUV-PUD的更关键的应用条件,例如通过预干燥步骤除去水和较差的水解稳定性我们已经通过一系列基于二聚脂肪酸的水解稳定的聚酯多元醇解决了这些不足。本文首次证明,聚酯多元醇改善了常规聚氨酯分散体的水解稳定性。随后,我们提出的结果表明,常规聚氨酯分散体的性能可以转化为可紫外线固化的聚氨酯分散体及其涂料。此外,还评估了该技术对聚氨酯丙烯酸酯体系的附着力的影响。

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  • 来源
    《色材協会誌》 |2009年第3期|112-117|共6页
  • 作者单位

    Croda, Netherlands Buurtje 1,2802 3E Gouda, Netherlands;

    Croda, Netherlands Buurtje 1,2802 3E Gouda, Netherlands;

    Croda, Netherlands Buurtje 1,2802 3E Gouda, Netherlands;

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