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Synthesis and characterization of acrylic polyols and polymers from soybean oils for pressure-sensitive adhesives

机译:从大豆油中制备丙烯酸多元醇和聚合物用于压敏粘合剂

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摘要

A new class of acrylic polyols was synthesized from epoxidized soybean oil (ESO) and free-radically polymerized via UV irradiation to form pressure-sensitive adhesives (PSAs). ESO first was partially acrylated, then the remaining epoxy groups were dihydroxylated to make acrylic polyols. The acrylic polyols were characterized with Fourier transform infrared spectroscopy, H-1 nuclear magnetic resonance, and hydroxyl value measurements. The degree of acrylation and hydroxyl functionality were carefully controlled to obtain polymers with a good balance of flexibility, crosslinking, and polarity, which are key attributes of PSAs. The glass transition temperature, rubbery plateau modulus, and cross-link density of polymers increased as the amount of acrylic polyol and the acrylate functionality of the resin increased. Biobased PSA with a good balance of peel strength (>4 N in (-1)), tack (>7 N in (-1)), and shear resistance (>50 000 min) was achieved. Positive correlations between the mechanical performance and viscoelastic responses of a frequency sweep of the PSAs were found.
机译:由环氧化大豆油(ESO)合成了一类新的丙烯酸多元醇,并通过UV辐射自由基聚合形成压敏胶(PSA)。首先将ESO部分丙烯酸化,然后将其余的环氧基二羟基化以制备丙烯酸多元醇。用傅立叶变换红外光谱,H-1核磁共振和羟值测量对丙烯酸多元醇进行了表征。仔细控制丙烯酸的程度和羟基官能度,以获得具有柔韧性,交联性和极性良好平衡的聚合物,这是PSA的关键属性。随着丙烯酸多元醇的量和树脂的丙烯酸酯官能度的增加,聚合物的玻璃化转变温度,橡胶态平稳模量和交联密度增加。实现了具有良好的剥离强度(在(-1)中> 4 N),粘性(在(-1)中> 7 N)和抗剪切性(> 50,000 min)之间良好平衡的生物基PSA。发现PSA频率扫描的机械性能和粘弹性响应之间呈正相关。

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