首页> 外文期刊>Journal of Applied Polymer Science >Facile synthesis of a castor oil-based hyperbranched acrylate oligomer and its application in UV-curable coatings
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Facile synthesis of a castor oil-based hyperbranched acrylate oligomer and its application in UV-curable coatings

机译:基于蓖麻籽超支化丙烯酸酯低聚物的容易合成及其在紫外线固化涂层中的应用

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摘要

Fabrication and performance of the castor oil (CO)-based hyperbranched acrylate (C20AA) UV-curable coatings are highlighted in this work. Herein, C20AA was obtained through a facile reaction of a castor oil-based hyperbranched polyol (C20) with acrylic acid. FT-IR and H-1 NMR spectra confirmed the synthesis of the target C20AA. Subsequently, the as-prepared C20AA was employed for crosslinking a commercialized linear polyurethane acrylate (PUA) UV-curable oligomer. Specifically, by varying the content of C20AA over the range of 0, 20, 40, and 60 wt%, a series of UV-curable coatings were prepared and coded as C20AA-0, C20AA-20, C20AA-40, and C20AA-60, respectively, which were further cured under UV irradiation. The effect of C20AA loadings on the UV-curing efficiency and final polymer performance were investigated. Consequently, the tensile strength, Shore D hardness, pencil hardness, gel content, water resistance, and glass-transition temperature of the UV-cured coatings were greatly improved upon the addition of C20AA. Impressively, with the incorporation of 40 wt% C20AA, the resultant UV-cured coating exhibited highest double bond conversion, superior chemical resistance, and good flexibility. Additionally, all of the coatings showed outstanding transparency and good surface microstructures.
机译:在这项工作中突出了蓖麻油(CO)基蓖麻油(CO)基础丙烯酸酯(C20AA)UV可固化涂层的制造和性能。在此,通过用蓖麻油的超支化多元醇(C20)与丙烯酸的容量反应获得C20AA。 FT-IR和H-1 NMR光谱证实了靶C20AA的合成。随后,使用AS制备的C20AA用于交联商业化的线性聚氨酯丙烯酸酯(PUA)UV可固化的低聚物。具体地,通过改变0,20,40和60wt%范围内的C20AA的含量,制备一系列UV可固化涂层并编码为C20AA-0,C20AA-20,C20AA-40和C20AA-分别在紫外线辐射下进一步固化的60。研究了C20AA载荷对UV固化效率和最终聚合物性能的影响。因此,在添加C20AA时大大提高了抗拉强度,肖氏D硬度,铅笔硬度,紫外线固化涂层的耐水性和玻璃化转变温度。在掺入40wt%C20AA的掺入令人印象深刻,所得的紫外线固化涂层具有最高的双键转化,优异的耐化学性和良好的柔韧性。另外,所有涂层显示出优异的透明度和良好的表面微观结构。

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