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Polylactic Acid/Polycaprolactone Blends: On the Path to Circular Economy Substituting Single-Use Commodity Plastic Products

机译:聚乳酸/聚己内酯共混物:在循环经济的路径上取代单用品塑料制品

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摘要

Circular economy comes to break the linear resource to waste economy, by introducing different strategies, two of them being: using material from renewable sources and producing biodegradable products. The present work aims at developing polylactic acid (PLA), typically made from fermented plant starch, and polycaprolactone (PCL) blends, a biodegradable polyester, to study their potential to be used as substitutes of oil-based commodity plastics. For this, PLA/PCL blends were compounded in a batch and lab scale internal mixer and processed by means of injection molding. Tensile and impact characteristics were determined and compared to different thermoplastic materials, such as polypropylene, high density polyethylene, polystyrene, and others. It has been found that the incorporation of PCL into a PLA matrix can lead to materials in the range of 18.25 to 63.13 megapascals of tensile strength, 0.56 to 3.82 gigapascals of Young’s modulus, 12.65 to 3.27 percent of strain at maximum strength, and 35 to 2 kJ/m2 of notched impact strength. The evolution of the tensile strength fitted the Voigt and Reuss model, while Young’s modulus was successfully described by the rule of mixtures. Toughness of PLA was significantly improved with the incorporation of PCL, significantly increasing the energy required to fracture the specimens. Blends containing more than 20 wt% of PCL did not break when unnotched specimens were tested. Overall, it was found that the obtained PLA/PCL blends can constitute a strong and environmentally friendly alternative to oil-based commodity materials.
机译:通过引入不同的策略,循环经济来打破浪费经济的线性资源,其中两个是:使用来自可再生来源的材料并产生可生物降解产品。本作者的目的旨在开发通常由发酵植物淀粉制成的聚乳酸(PLA),以及聚己内酯(PCL)共混物,可生物降解的聚酯,研究其潜力作为油基商品塑料的替代。为此,PLA / PCL共混物在分批和实验室刻度内部混合器中配混并通过注塑成型加工。测定拉伸和冲击特性,并与不同的热塑性材料进行比较,例如聚丙烯,高密度聚乙烯,聚苯乙烯等。已经发现,PCL的掺入PLA基质可导致材料中的18.25至63.13兆帕的抗张强度,0.56〜3.82千兆帕的杨氏模量的,在最大强度应变的12.65至3.27%,而35到的范围内2 KJ / M2的缺口冲击强度。拉伸强度的演变安装了voigt和Reuss模型,而杨氏模量被混合物的规则成功描述。通过PCL掺入,PLA的韧性显着改善,显着提高了裂缝试样所需的能量。在测试不存在的样品时,含有超过20wt%的PCL的混合物不会破裂。总体而言,发现所获得的PLA / PCL共混物可以构成对油基商品材料的强大和环保替代品。

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