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Synthesis and evaluation of thermally-responsive coatings based upon Diels–Alder chemistry and renewable materials

机译:基于Diels-Alder化学和可再生材料的热响应涂层的合成与评价

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摘要

A soybean based coating with thermally responsive Diels–Alder linkages has been prepared following an automotive 2-component formulation. The resulting coatings displayed the capability to be healed following physical deformation by a thermal stimulus, and such a material has significant potential for end users. Various curing agents were employed, and resulted in variation of scratch resistance and re-healablity. Different thermally responsive soybean resins were synthesized to have varying amounts reversible and nonreversible linkages when incorporated into the coating. Additionally, different isocyanates were added at differing ratios of NCO:OH in search of the optimum coating. It was found through the analysis of rehealability, hardness, gloss, and adhesion that the optimal combination was an acetylated resin (no irreversible crosslinks) with 54% reversible Diels–Alder linkages at an NCO:OH ratio of 5:1 using isophorone diiscocyanate. Materials were evaluated via differential scanning calorimetry (DSC), scratch resistance, Koenig hardness, gloss measurements, and topographical analysis.
机译:在汽车2-组分制剂之后制备了具有热响应Diels-Alder键的大豆涂层。所得到的涂层显示出通过热刺激物理变形后愈合的能力,并且这种材料具有最终用户的显着潜力。使用各种固化剂,导致耐刮擦性和再恢复性的变化。合成不同的热敏响应大豆树脂以在掺入涂层中时具有不同量的可逆和不可层的键。另外,在NCO的不同比例下加入不同的异氰酸酯:OH以寻找最佳涂层。通过分析可再现性,硬度,光泽度和粘附性,即最佳组合是乙酰化树脂(无不可逆转的交联),使用异佛酮二铟氰酸酯,在NCO:OH比下的54%可逆Diels-Alder键是54%的可逆Diels-Alder键。通过差示扫描量热法(DSC),耐刮擦,Koenig硬度,光泽度测量和地形分析评估材料。

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