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Characterization and Mechanical Properties of Epoxidized Palm Oil / Epoxy Resin Blend

机译:环氧化棕榈油/环氧树脂共混物的表征与力学性能

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Epoxidized vegetable oils based thermoset materials are widely used to develop biopolymers and to replace the fossil-fuel based polymers. In this paper, a blend of epoxy resin and epoxidized palm oil (EPO) were prepared and characterized by direct and pre-mixed methods to investigate its mechanical properties. For direct method, epoxy and EPO were mixed for 20 minutes at room temperature followed by curing for 2 hours at 100 °C. On other hand, for pre-mixed method, the EPO was reacted with hardener at 120 °C for 1 and 2 hours. Then it was mixed with epoxy resin at room temperature for 20 minutes followed by curing for 2 hours at 100 °C. Fourier transforms infrared spectroscopy [FTIR] and mechanical properties tests were used to characterize the blend. FTIR showed that, a reaction of epoxide group in EPO with active hydrogen atom from hardener and produced a hydroxyl group at 3300 cm~(-1). In general, the mechanical properties of epoxy resin/EPO were decreased when the amount of EPO was increased. However, at constant amount of EPO Young's modulus, toughness, flexural strength, and flexural modulus were slightly increased when the time of EPO/hardener was increased. The mechanical properties were reduced due to the reduction of the cross linking density and effect of plasticizer.
机译:基于环氧化的植物油的热固性材料被广泛用于开发生物聚合物,并替换化石 - 燃料基聚合物。本文制备了环氧树脂和环氧化棕榈油(EPO)的共混物,并通过直接和预混合方法进行了研究,以研究其机械性能。对于直接方法,将环氧和EPO在室温下混合20分钟,然后在100℃下固化2小时。另一方面,对于预混合方法,EPO在120℃下与硬化剂反应1和2小时。然后将其在室温下与环氧树脂混合20分钟,然后在100℃下固化2小时。傅里叶变换红外光谱[FTIR]和机械性能试验用于表征混合物。 FTIR表明,环氧基团在EPO中与来自硬化的活性氢原子的反应,并在3300cm〜(-1)下产生羟基。通常,当EPO的量增加时,环氧树脂/ EPO的机械性能降低。然而,当EPO /硬化剂的时间增加时,在恒定的EPO杨氏模量,韧性,弯曲强度和弯曲模量略有增加。由于增量的交叉连接密度和增塑剂的作用,减少了机械性能。

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