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The Influence of Biobased Olegomeric Diisocyanate on Thermal and Mechanical Properties of Poly (3-hydroxybutyrate)

机译:生物化烯烃二异氰酸酯对聚(3-羟基丁酯)热和力学性能的影响

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In the present work, poly (3-hydroxybutyrate) (PHB) blends were prepared by melt blending with biobased oligomeric diisocyanate synthesised from hexamethelene diisocyanate (Tolonate XFLO100 (TXF100)). PHBTXF100 blends with four different weight fraction (10, 15, 20 and 25 phr) of TXF100 were prepared and characterized for mechanical, thermal and thermomechanical properties. Strain at break and tensile toughness of PHBTXF10025 blend were improved by 200% and 193%, respectively. PHBTXF100 blends showed a broad glass transition temperature with a decreased onset temperature compared to PHB. PHBTXF100 blends exhibited low crystallinity than PHB, and was further decreased with an increased weight fraction of TXF100. Elastic and storage moduli PHBTXF100 blends were decreased compared to PHB, and correlated to their low degree of crystallinity. The changes in mechanical properties of PHBTXF100 blends were mainly due to efficient weakening of intermolecular interactions in the amorphous regions of PHB, and also a slight decrease in crystalline order of PHB.
机译:在本作工作中,通过将来自六甲基烯二异氰酸酯合成的生物化低聚二异氰酸酯(可甲醛XFLO100(TXF100))合成的生物寡聚二异氰酸酯,制备聚(3-羟基丁酯)(PHB)共混物。制备具有四种不同重量级分(10,15,20和25phr)的TXF100的PHBTXF100混合,并表征机械,热和热机械性能。 PhBTXF10025混合物的断裂和拉伸韧性分别提高200%和193%。与PHB相比,PHBTXF100共混物显示出宽玻璃化转变温度,起始温度降低。 PHBTXF100共混物表现出低结晶度,而不是PHB,并且随着TXF100的重量分数增加,进一步降低。与PHB相比,弹性和储存模量的混合物降低,与它们的低结晶度相关。 PHBTXF100共混物的机械性能变化主要是由于PHB的无定形区域中分子间相互作用的有效弱化,并且SPB的结晶顺序略微降低。

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