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Lignin Reinforced Rubber Composites

机译:木质素增强橡胶复合材料

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摘要

Lignin, a renewable waste material of pulp and paper industries, was analyzed through Fourier-Transform Infrared Spectroscopy (FTIR) and found ot be structurally similar to kraft lignin. Surface modification by addition of benzoyl peroxide and subsequent heating at 70 deg C caused generation of new functional groups in lignin. Efficacy of the crude lignin as well as that of the modified variety as a filler in nitrile rubber (NBR) has been evaluated . Rubber vulcanizates were analyzed for physico-mechanical properties, oil and fuel resistance, and thermal stability, and compared with conventional fillers like phenolic resin and carbon black. Modified lignin has been found to produce superior elongation, hardness and compression set properties compared to phenolic resin but inferior to carbon black. Resistance to swelling, however, depends on the type of oil or fuel, and modified lignin always showed better properties than carbon black. Both thermo-gravimetric analysis (TGA) and thermo-mechanical analysis (TMA) showed highest thermla stability for the modified lignin followed by phenolic resin and carbon black.
机译:木质素是纸浆和造纸工业的可再生废料,通过傅里叶变换红外光谱(FTIR)进行了分析,发现其结构与牛皮纸木质素相似。通过添加过氧化苯甲酰并随后在70℃下加热进行表面改性,导致木质素中产生新的官能团。已经评估了粗木质素以及改性品种作为丁腈橡胶(NBR)填料的功效。分析了橡胶硫化橡胶的物理机械性能,耐油和燃料性以及热稳定性,并与酚醛树脂和炭黑等常规填料进行了比较。已发现与酚醛树脂相比,改性木质素可产生优异的伸长率,硬度和压缩永久变形性能,但不如炭黑。但是,抗溶胀性取决于油或燃料的类型,改性木质素始终显示出比炭黑更好的性能。热重分析(TGA)和热机械分析(TMA)均显示改性木质素的热稳定性最高,其次是酚醛树脂和炭黑。

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