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首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Preparation and Properties of Biocomposites Composed of Bio-Based Epoxy Resin, Tannic Acid, and Microfibrillated Cellulose
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Preparation and Properties of Biocomposites Composed of Bio-Based Epoxy Resin, Tannic Acid, and Microfibrillated Cellulose

机译:生物基环氧树脂,单宁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 new bio-based epoxy resin systems, glycerol polyglycidyl ether (GPE) and sorbitol polyglycidyl ether (SPE) were cured with tannic acid (TA) at various conditions. When the curing conditions were optimized for the improvement of thermal and mechanical properties, the most balanced properties were obtained for the GPE/TA and SPE/TA cured at 160 C for 2–3 h at the epoxy/hydroxyl ratio of 1/1. The cured SPE/TA had a higher glass transition temperature (Tg) and tensile strength than the cured GPE/TA. Next, biocomposites of GPE/ TA and SPE/TA with microfibrillated cellulose (MFC) were prepared by mixing aqueous solution of the epoxy/curing reagent with MFC, and subsequent drying and curing at the optimized condition. For both the GPE/TA/MFC and SPE/TA/MFC biocomposites, Tg and the storage modulus at rubbery plateau region increased with increasing MFC content over the studied range of 3–15 wt %. The tensile strength at 25 C for GPE/TA/MFC biocomposite with MFC content 10 wt % was 76% higher than that of control GPE/TA, while the tensile modulus was little improved. On the other hand, the tensile strength and modulus of SPE/TA/MFC biocomposite with MFC content 10 wt % were 30 and 55% higher than those of control SPE/TA, respectively.
机译:作为新的生物基环氧树脂体系,甘油聚缩水甘油醚(GPE)和山梨糖醇聚缩水甘油醚(SPE)在不同条件下用鞣酸(TA)固化。当优化固化条件以改善热性能和机械性能时,GPE / TA和SPE / TA在环氧/羟基比为1/1的情况下在160℃下固化2–3小时可获得最平衡的性能。固化的SPE / TA比固化的GPE / TA具有更高的玻璃化转变温度(Tg)和拉伸强度。接下来,通过将环氧/固化剂的水溶液与MFC混合,然后在最佳条件下干燥和固化,来制备GPE / TA和SPE / TA与微纤化纤维素(MFC)的生物复合材料。对于GPE / TA / MFC和SPE / TA / MFC生物复合材料,在研究的3–15 wt%范围内,Tg和橡胶高原区域的储能模量均随MFC含量的增加而增加。 MFC含量为10 wt%的GPE / TA / MFC生物复合材料在25℃时的拉伸强度比对照GPE / TA高76%,而拉伸模量几乎没有改善。另一方面,MFC含量为10wt%的SPE / TA / MFC生物复合材料的拉伸强度和模量分别比对照SPE / TA高30和55%。

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