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首页> 外文期刊>Composites Science and Technology >Regulating tannic acid-crosslinked epoxidized soybean oil oligomers for strengthening and toughening bamboo fibers-reinforced poly(lactic acid) biocomposites
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Regulating tannic acid-crosslinked epoxidized soybean oil oligomers for strengthening and toughening bamboo fibers-reinforced poly(lactic acid) biocomposites

机译:调节单宁酸交联的环氧化大豆油低聚物,以增强和增韧竹纤维增强的聚乳酸生物复合材料

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摘要

Bamboo fibers-reinforced poly(lactic acid) (BF/PLA) biocomposites were strengthened and toughened with tannic acid-crosslinked epoxidized soybean oil (TA-ESO) oligomer via reactive extrusion. By adjusting the concentration of TA-ESO on the BFs surface, TA-ESO oligomer was designed to localize at the interface of the composites and then to disperse within PLA matrix. As evidenced by FTIR and XPS analyses, a low concentration of TA-ESO oligomer generated strong interactions with BFs via natural polyphenol-inspired chemistry and formed a flexible interfacial layer between the BFs and PLA matrix. The TA-ESO oligomer with a high concentration would diffuse inside PLA matrix as a rubbery phase to toughen the matrix and thus the composites. The strengthening and toughening effects of TA-ESO phase on the BF/PLA composites were fully discussed by investigating the crystallization behavior, tensile properties, impact strength, thermo-mechanical properties, and morphological analysis of the resulting fully biobased BF/TA-ESO/PLA ternary biocomposites.
机译:通过单宁酸交联的环氧化大豆油(TA-ESO)低聚物,通过反应性挤出对竹纤维增强的聚乳酸(BF / PLA)生物复合材料进行了增强和增韧。通过调节高炉表面上TA-ESO的浓度,设计了TA-ESO低聚物,使其位于复合材料的界面,然后分散在PLA基质中。 FTIR和XPS分析证明,低浓度的TA-ESO低聚物会通过自然多酚启发的化学作用与BFs产生强相互作用,并在BFs和PLA基质之间形成一个柔性界面层。高浓度的TA-ESO低聚物会在PLA基体内以橡胶相的形式扩散,从而使基体和复合材料增韧。通过研究结晶行为,拉伸性能,冲击强度,热机械性能以及所得的全生物基BF / TA-ESO /的形态分析,充分讨论了TA-ESO相对BF / PLA复合材料的强化和增韧作用。 PLA三元生物复合材料。

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