首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Toughness Enhancement of PHBV/TPU/Cellulose Compounds with Reactive Additives for Compostable Injected Parts in Industrial Applications
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Toughness Enhancement of PHBV/TPU/Cellulose Compounds with Reactive Additives for Compostable Injected Parts in Industrial Applications

机译:含反应性添加剂的PHBV / TPU /纤维素化合物在工业应用中可堆肥注射部件的韧性增强

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摘要

Poly(3-hydroxybutyrate-co-3-valerate), PHBV, is a bacterial thermoplastic biopolyester that possesses interesting thermal and mechanical properties. As it is fully biodegradable, it could be an alternative to the use of commodities in single-use applications or in those intended for composting at their end of life. Two big drawbacks of PHBV are its low impact toughness and its high cost, which limit its potential applications. In this work, we proposed the use of a PHBV-based compound with purified α-cellulose fibres and a thermoplastic polyurethane (TPU), with the purpose of improving the performance of PHBV in terms of balanced heat resistance, stiffness, and toughness. Three reactive agents with different functionalities have been tested in these compounds: hexametylene diisocianate (HMDI), a commercial multi-epoxy-functionalized styrene-co-glycidyl methacrylate oligomer (Joncryl® ADR-4368), and triglycidyl isocyanurate (TGIC). The results indicate that the reactive agents play a main role of compatibilizers among the phases of the PHBV/TPU/cellulose compounds. HMDI showed the highest ability to compatibilize the cellulose and the PHBV in the compounds, with the topmost values of deformation at break, static toughness, and impact strength. Joncryl® and TGIC, on the other hand, seemed to enhance the compatibility between the fibres and the polymer matrix as well as the TPU within the PHBV.
机译:聚(3-羟基丁酸酯-共-3-戊酸酯)PHBV是一种细菌热塑性生物聚酯,具有有趣的热和机械性能。由于它是完全可生物降解的,因此可以替代在单次使用或打算在堆肥结束时用于堆肥的商品。 PHBV的两个主要缺点是冲击韧性低和成本高,这限制了其潜在的应用范围。在这项工作中,我们提出将PHBV基化合物与纯化的α-纤维素纤维和热塑性聚氨酯(TPU)结合使用,目的是在平衡的耐热性,刚度和韧性方面提高PHBV的性能。在这些化合物中测试了三种具有不同功能的反应剂:六亚甲基二异氰酸酯(HMDI),市售的多环氧官能化的甲基丙烯酸苯乙烯-共缩水甘油酯低聚物(Joncryl ® ADR-4368)和三缩水甘油基异氰脲酸酯(TGIC)。结果表明,在PHBV / TPU /纤维素化合物的各相之间,反应剂起着增容剂的主要作用。 HMDI显示出使化合物中的纤维素和PHBV相容的最高能力,其中断裂变形,静态韧性和冲击强度最高。另一方面,Joncryl ®和TGIC似乎增强了纤维与聚合物基质以及PHBV中TPU之间的相容性。

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