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Physicochemical properties of the electron beam irradiated bamboo powder and its bio-composites with PLA

机译:电子束辐照竹粉及其与PLA的生物复合物的理化性质

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摘要

The high cost and low toughness of Poly (lactic acid) (PLA) are the main drawbacks of PLA which limit its commercial applications. However, the cost of PLA can be reduced by incorporating it with various bio-based low-priced fillers. The bamboo powder (BP), lignocellulosic biomass, is promising green filler since it has high cellulose contents and no competition with food. However, its poor compatibility with the polymers reduces the mechanical properties of the resulting composite. Hence, this work investigates the electron beam irradiation pretreatment of bamboo powders. Further, the electron beam irradiated bamboo powder was blended with PLA in two different concentrations (5% and 10%) along with epoxide silane (3-Glycidoxypropyltrimethoxy silane) as a compatibilizer. The FT-IR, XRD, and TG/DTA analyses revealed that the irradiation demolishes aliphatic and aromatic moieties of bamboo powder followed by the formation of free radicals. The reduction in the intra and intermolecular hydrogen bonding among these moieties are also asserted. Moreover, mechanical and thermal properties of PLA/electron beam irradiated bamboo powder (PLA/EBP) composites are tested and obtained results have shown the improvement in the notched impact strength as well as stability in other mechanical and thermal properties. The compatibility and dispersion of the electron beam irradiated bamboo powder in the PLA matrix were analyzed by SEM studies. The hydrolytic degradation test of prepared composites was also performed.
机译:聚乳酸(PLA)的高成本和低韧性是PLA的主要缺点,限制了其商业应用。但是,PLA的成本可以通过与各种生物基低价填料结合使用来降低。竹粉(BP)是木质纤维素生物质,是有前途的绿色填充剂,因为它具有很高的纤维素含量并且与食品没有竞争性。然而,其与聚合物的差的相容性降低了所得复合材料的机械性能。因此,这项工作研究了竹粉的电子束辐照预处理。此外,将电子束照射的竹粉与两种以不同浓度(5%和10%)的PLA以及作为增容剂的环氧硅烷(3-缩水甘油氧基丙基三甲氧基硅烷)混合。 FT-IR,XRD和TG / DTA分析表明,辐照会破坏竹粉的脂族和芳族部分,然后形成自由基。这些部分之间的内和分子间氢键的减少也被认为是减少的。此外,对PLA /电子束辐照竹粉(PLA / EBP)复合材料的机械和热性能进行了测试,获得的结果表明,缺口冲击强度以及其他机械和热性能的稳定性得到了改善。通过SEM研究了电子束辐照竹粉在PLA基质中的相容性和分散性。还进行了制备的复合材料的水解降解试验。

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