School of Resources and Environmental Engineering, Shanghai Polytechnic University (SSPU), Shanghai 201209, People's Republic of China.
School of Resources and Environmental Engineering, Shanghai Polytechnic University (SSPU), Shanghai 201209, People's Republic of China.
Int J Biol Macromol. 2024 Nov;279(Pt 1):135226. doi: 10.1016/j.ijbiomac.2024.135226. Epub 2024 Aug 30.
Polylactic acid (PLA) wood-plastic composites have a significant advantage over traditional petroleum-based plastics due to their biodegradability. However, PLA has several shortcomings, including high brittleness, low heat resistance, slow crystallization, and poor compatibility with biomass materials, which have limited its potential applications. In this paper, we investigated the effects of carboxy-terminated hyperbranched polyester (CHBP) on the mechanical, crystalline, and thermal properties of PLA/straw flour (SF) blends through extrusion injection molding. Additionally, we added the traditional plasticizer polyethylene glycol (PEG) to synergize with CHBP to enhance the toughness of PLA/SF composites. Our results showed that the appropriate addition of CHBP effectively improved the interfacial bonding between PLA and straw flour. The incorporation of CHBP also improved the tensile strength, bending strength, impact strength, elongation at break, thermal stability, and crystallization rate of the composites. Furthermore, the addition of both CHBP and PEG significantly improved the impact strength of the composites compared to using PEG alone. This method also improved the heat resistance of the material and reduced the migration of plasticizers. Our study demonstrates the feasibility of using hyperbranched polymers and plasticizers to enhance the toughness, thermal stability, and crystalline properties of PLA wood-plastic composites, providing a new approach to improving the properties of these composites.
聚乳酸(PLA)木塑复合材料由于其可生物降解性,相对于传统的石油基塑料具有显著优势。然而,PLA 也存在一些缺点,包括高脆性、低耐热性、结晶缓慢以及与生物质材料的相容性差,这些限制了其潜在的应用。在本文中,我们通过挤出注塑研究了端羧基超支化聚酯(CHBP)对 PLA/秸秆粉(SF)共混物的力学、结晶和热性能的影响。此外,我们还添加了传统增塑剂聚乙二醇(PEG)与 CHBP 协同作用,以提高 PLA/SF 复合材料的韧性。研究结果表明,适量添加 CHBP 可以有效改善 PLA 和秸秆粉之间的界面结合。CHBP 的加入还提高了复合材料的拉伸强度、弯曲强度、冲击强度、断裂伸长率、热稳定性和结晶速率。此外,与单独使用 PEG 相比,同时添加 CHBP 和 PEG 可显著提高复合材料的冲击强度。该方法还提高了材料的耐热性并减少了增塑剂的迁移。本研究证明了使用超支化聚合物和增塑剂来提高 PLA 木塑复合材料的韧性、热稳定性和结晶性能的可行性,为改善这些复合材料的性能提供了一种新方法。