Seo Young-Rok, Bae Sang-U, Gwon Jaegyoung, Wu Qinglin, Kim Birm-June
Department of Forest Products and Biotechnology, Kookmin University, Seoul 02707, Korea.
Wood Chemistry Division, National Institute of Forest Science, Seoul 02455, Korea.
Materials (Basel). 2020 Apr 3;13(7):1660. doi: 10.3390/ma13071660.
Polylactic acid (PLA)/polybutylene succinate (PBS)/wood flour (WF) biocomposites were fabricated by in situ reactive extrusion with coupling agents. Methylenediphenyl 4,4'-diisocyanate (MDI) and maleic anhydride (MA) were used as coupling agents. To evaluate the effects of MDI and MA, various properties (i.e., interfacial adhesion, mechanical, thermal, and viscoelastic properties) were investigated. PLA/PBS/WF biocomposites without coupling agents revealed poor interfacial adhesion leading to deteriorated properties. However, the incorporation of MDI and/or MA into biocomposites showed high performances by increasing interfacial adhesion. For instance, the incorporation of MDI resulted in improved tensile, flexural, and impact strengths and an increase in tensile and flexural modulus was observed by the incorporation of MA. Specially, remarkably improved thermal stability was found in the PLA/PBS/WF biocomposites with 1 phr MDI and 1 phr MA. Also, the addition of MDI or MA into biocomposites increased the glass transition temperature and crystallinity, respectively. For viscoelastic property, the PLA/PBS/WF biocomposites with 1 phr MDI and 1 phr MA achieved significant enhancement in storage modulus compared to biocomposites without coupling agents. Therefore, the most balanced performances were evident in the PLA/PBS/WF biocomposites with the hybrid incorporation of small quantities of MDI and MA.
采用偶联剂通过原位反应挤出法制备了聚乳酸(PLA)/聚丁二酸丁二醇酯(PBS)/木粉(WF)生物复合材料。使用二苯基甲烷二异氰酸酯(MDI)和马来酸酐(MA)作为偶联剂。为了评估MDI和MA的效果,研究了各种性能(即界面粘附性、力学性能、热性能和粘弹性性能)。不含偶联剂的PLA/PBS/WF生物复合材料显示出较差的界面粘附性,导致性能恶化。然而,将MDI和/或MA加入生物复合材料中,通过增加界面粘附性表现出高性能。例如,加入MDI使拉伸强度、弯曲强度和冲击强度得到改善,加入MA使拉伸模量和弯曲模量增加。特别地,在含有1份MDI和1份MA的PLA/PBS/WF生物复合材料中发现热稳定性显著提高。此外,向生物复合材料中加入MDI或MA分别提高了玻璃化转变温度和结晶度。对于粘弹性性能,与不含偶联剂的生物复合材料相比,含有1份MDI和1份MA的PLA/PBS/WF生物复合材料的储能模量有显著提高。因此,在少量MDI和MA混合加入的PLA/PBS/WF生物复合材料中,性能最为平衡。