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通过诱导结晶网络原位增强非晶态聚乳酸(PLA)及其高韧性和增韧的 PLA/聚丁二酸丁二醇酯-对苯二甲酸酯(PBAT)共混物。

In-situ self-reinforcement of amorphous polylactide (PLA) through induced crystallites network and its highly ductile and toughened PLA/poly(butylene adipate-co-terephthalate) (PBAT) blends.

机构信息

Sustainable & Green Plastics Laboratory, Metallurgical & Materials Engineering Department, Faculty of Chemical and Metallurgical Engineering, Istanbul Technical University, Istanbul 34469, Turkey.

Sustainable & Green Plastics Laboratory, Metallurgical & Materials Engineering Department, Faculty of Chemical and Metallurgical Engineering, Istanbul Technical University, Istanbul 34469, Turkey; Metallurgical & Materials Engineering Department, Faculty of Chemical and Metallurgical Engineering, Yildiz Technical University, Esenler, Istanbul 34220, Turkey.

出版信息

Int J Biol Macromol. 2024 Jun;272(Pt 2):132936. doi: 10.1016/j.ijbiomac.2024.132936. Epub 2024 Jun 5.

Abstract

Crystallites of a semicrystalline polylactide (cPLA) were induced in an amorphous PLA (aPLA) and its blends with poly(butylene adipate-co-terephthalate) (PBAT) to achieve in-situ self-reinforced PLA based structures. The approach involved the melt blending of cPLA as a minor phase with aPLA and its blends with PBAT at processing temperatures below the crystal melting peak of cPLA. An injection molding (IM) process was first adopted to obtain self-reinforced PLA (SR-PLA) structures at aPLA/cPLA weight ratios of 100/0, 95/5, 90/10, 85/15, and 80/20. IM barrel and mold temperatures revealed crucial impacts on preserving the cPLA crystallites and thereby enhancing the final mechanical performance of SR-PLA (i.e., aPLA/cPLA) samples. SR-PLA samples at various aPLA/cPLA weight ratios of 100/0, 90/10, 80/20, and 70/30 were then melt blended with PBAT to produce SR-PLA/PBAT at a given ratio of 85/15. These blends were first prepared in an internal melt mixer (MM) to evaluate the rheological properties. The rheological analysis confirmed the significance of cPLA reinforcing efficiency within SR-PLA and its corresponding blends with PBAT. Similar SR-PLA/PBAT blends were also prepared using the IM process to explore their thermal and mechanical characteristics. The effect of cPLA concentrations in blends was distinctive, leading to significant enhancements in stain at break and toughness values. This was due to the increased crystallite network within the matrix, further refining PBAT droplets. Morphological analysis of the melt-processed blends through MM and IM also revealed that the PBAT droplets were further refined when the IM process was applied. The induced shear during the molding could have further elongated the cPLA crystallites towards a fiberlike structure, which could additionally cause the matrix viscosity to increase and refine the PBAT droplets.

摘要

将半结晶聚乳酸 (cPLA) 的晶须诱导到无定形聚乳酸 (aPLA) 及其与聚丁二酸丁二醇酯-对苯二甲酸酯 (PBAT) 的共混物中,以实现原位自增强 PLA 基结构。该方法涉及在低于 cPLA 晶体熔融峰的加工温度下,将 cPLA 作为次要相与 aPLA 及其与 PBAT 的共混物进行熔融共混。首先采用注塑 (IM) 工艺,在 aPLA/cPLA 重量比为 100/0、95/5、90/10、85/15 和 80/20 的情况下获得自增强 PLA (SR-PLA) 结构。IM 机筒和模具温度对保留 cPLA 晶须并从而提高 SR-PLA(aPLA/cPLA) 样品的最终力学性能有重要影响。然后,将各种 aPLA/cPLA 重量比为 100/0、90/10、80/20 和 70/30 的 SR-PLA 样品与 PBAT 熔融共混,以制备特定比例为 85/15 的 SR-PLA/PBAT。这些共混物首先在内部分散混合器 (MM) 中进行制备,以评估流变性能。流变分析证实了 cPLA 在 SR-PLA 及其与 PBAT 的共混物中的增强效率的重要性。还使用 IM 工艺制备了类似的 SR-PLA/PBAT 共混物,以探索其热性能和力学性能。共混物中 cPLA 浓度的影响是显著的,导致断裂伸长率和韧性值的显著提高。这是由于基质中结晶网络的增加,进一步细化了 PBAT 液滴。通过 MM 和 IM 对熔融加工共混物的形态分析也表明,当应用 IM 工艺时,PBAT 液滴进一步细化。成型过程中的诱导剪切可能进一步将 cPLA 晶须拉长为纤维状结构,这可能进一步增加基质粘度并细化 PBAT 液滴。

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