首页> 外文期刊>Journal of Applied Polymer Science >Preparation and properties of biocomposites composed of epoxidized soybean oil, tannic acid, and microfibrillated cellulose
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Preparation and properties of biocomposites composed of epoxidized soybean oil, tannic acid, and microfibrillated cellulose

机译:环氧化大豆油,鞣酸和微纤化纤维素组成的生物复合材料的制备和性能

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摘要

As a new biobased epoxy resin system, epoxidized soybean oil (ESO) was cured with tannic acid (TA) under various conditions. When the curing conditions were optimized for the improvement of the thermal and mechanical properties, the most balanced properties were obtained when the system was cured at 210°C for 2 h at an epoxy/hydroxyl ratio of 1.0/1.4. The tensile strength and modulus and tan δ peak temperature measured by dynamic mechanical analysis for the ESO-TA cured under the optimized condition were 15.1 MPa, 458 MPa, and 58°C, respectively. Next, we prepared biocomposites of ESO, TA, and microfibrillated cellulose (MFC) with MFC contents from 5 to 11 wt % by mixing an ethanol solution of ESO and TA with MFC and subsequently drying and curing the composites under the optimized conditions. The ESO-TA-MFC composites showed the highest tan δ peak temperature (61°C) and tensile strength (26.3 MPa) at an MFC content of 9 wt %. The tensile modulus of the composites increased with increasing MFC content and reached 1.33 GPa at an MFC content of 11 wt %. Scanning electron microscopy observation revealed that MFC was homogeneously distributed in the matrix for the composite with an MFC content of 9 wt %, whereas some aggregated MFC was observed in the composite with 11 wt % MFC.
机译:作为一种新的生物基环氧树脂体系,环氧化大豆油(ESO)在不同条件下用单宁酸(TA)进行了固化。当优化固化条件以改善热性能和机械性能时,当体系在210°C下以1.0 / 1.4的环氧/羟基比率固化2小时时,可获得最平衡的性能。通过动态力学分析在最佳条件下固化的ESO-TA的拉伸强度,模量和tanδ峰值温度分别为15.1 MPa,458 MPa和58°C。接下来,我们通过将ESO和TA的乙醇溶液与MFC混合,然后在优化的条件下干燥和固化复合材料,制备了ESO,TA和MFC含量为5至11 wt%的微纤化纤维素(MFC)的生物复合材料。 ESO-TA-MFC复合材料在MFC含量为9 wt%时显示出最高的tanδ峰值温度(61°C)和拉伸强度(26.3 MPa)。复合材料的拉伸模量随着MFC含量的增加而增加,并且在MFC含量为11 wt%时达到1.33 GPa。扫描电子显微镜观察显示,对于MFC含量为9wt%的复合材料,MFC均匀地分布在基质中,而在MFC含量为11wt%的复合材料中观察到一些聚集的MFC。

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