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Effect of Diisocyanates as Compatibilizer on the Properties of BF/PBAT Composites by In Situ Reactive Compatibilization, Crosslinking and Chain Extension

机译:二异氰酸酯作为增容剂对BF / PBAT复合材料的性能,以原位反应性相容,交联和链延伸

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摘要

Due to the hydrophobic nature of poly (butylene terephthalate) (PBAT), and the hydrophilic nature of bamboo flour (BF), a BF/PBAT (50/50) blend shows low mechanical properties, and especially shows poor impact strength. In order to increase the interfacial adhesion between BF and PBAT, diisocyanate was used as a reactive compatibilizer to modify bamboo powder. A series of BF/PBAT composites were prepared by the method of mixing and melting in an internal mixer. After adding reactive compatibilizer 4,4′-methylenebis(phenyl isocyanate) (MDI), BF/PBAT (50/50) composites with high mechanical properties were successfully prepared. The tensile strength, elongation at break, and impact strength of the BF/MDI-2/PBAT composite with 2 wt % MDI content were increased by 1.9, 6.8, and 4.3 times respectively over the BF/PBAT blend without the added MDI. The higher toughening effect of MDI in BF/PBAT composites can be mainly ascribed to the improved interface bonding between BF and PBAT. The isocyanate group of MDI can react with the hydroxyl group on the BF surface and in situ formation of the carbamate group on the BF surface. The residual isocyanate can then react with the hydroxyl group of PBAT and form carbamate groups. The rheological behaviors demonstrate that addition of appropriate amounts of MDI, 1 wt % and 2 wt %, can promote the flowability of the molten BF/PBAT composites due to the decrease in interparticle interaction between bamboo powder and the increase in the thermal motion of the molecules.
机译:由于聚(对苯二甲酸丁二醇酯)(PBAT),的疏水性质和竹粉(BF),一个BF / PBAT(50/50)共混物显示出低的机械性能,特别是显示效果差的冲击强度的亲水性质。为了增加BF和PBAT之间的界面粘合性,二异氰酸酯被用作反应性增容剂以修改竹粉。一系列的BF /通过混合并在内部混合器中熔融的方法制备PBAT复合材料。添加反应性相容剂4,4'-亚甲基双(苯基异氰酸酯)(MDI)后,BF / PBAT成功制备(50/50)具有高机械性能的复合材料。拉伸强度,断裂伸长率,并用2%(重量)的MDI含量的BF / MDI-2 / PBAT复合材料的冲击强度经没有添加MDI的BF / PBAT共混物增加了1.9,6.8,和分别为4.3倍。在BF / PBAT复合MDI的较高增韧效果可主要归因于BF和PBAT之间的改进的接口粘结。 MDI的异氰酸酯基团可以在BF表面和BF表面上的氨基甲酸酯基团的原位形成与羟基基团反应。然后残余异氰酸酯可与PBAT的羟基反应并形成氨基甲酸酯基团。流变行为表明加入的MDI的适当量,1重量%和2重量%的,能促进熔融BF / PBAT复合材料的流动性,由于竹粉和在的热运动的增加之间的间相互作用的减少分子。

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