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Structure, properties and interfacial interactions in poly(lactic acid)/polyurethane blends prepared by reactive processing

机译:通过反应加工制备的聚乳酸/聚氨酯共混物的结构,性质和界面相互作用

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摘要

Polyurethane elastomers are promising candidates for the impact modification of PLA producing blends for example for biomedicine. Poly(lactic acid) (PLA)/polyurethane elastomer (PU) blends were prepared by reactive processing and physical blending as comparison. The blends were characterized by a number of techniques including microscopy (scanning electron microscopy, SEM, and atomic force microscopy, AFM), rotational viscometry, thermal (dynamic mechanical analysis), DMA, and mechanical (tensile) measurements. The analysis and comparison of the structure and properties of physical and reactor blends proved the successful coupling of the phases. Coupling resulted in more advantageous structure and superior mechanical properties compared to those of physical blends as confirmed by morphology, macroscopic properties and the quantitative estimation of interfacial interactions. Structural studies and the composition dependence of properties indicated the formation of a submicron, phase-in-phase structure which positively influenced properties at large PU contents. The results strongly support that reactive processing is a convenient, cost-effective and environmentally friendly technique to obtain blends with superior properties.
机译:聚氨酯弹性体有望成为PLA生产生物医学共混物抗冲击改性的候选材料。作为比较,通过反应性加工和物理共混制备了聚乳酸(PLA)/聚氨酯弹性体(PU)共混物。共混物通过多种技术进行表征,包括显微镜(扫描电子显微镜,SEM和原子力显微镜,AFM),旋转粘度测定,热(动态机械分析),DMA和机械(拉伸)测量。对物理混合物和反应器混合物的结构和性能的分析和比较证明了相的成功耦合。相较于物理共混物,通过形态,宏观性能和界面相互作用的定量估计,偶联产生了更有利的结构和优异的机械性能。结构研究和性能的成分依赖性表明,形成了亚微米的同相结构,这对大量PU含量的性能产生了积极影响。结果强烈支持反应性加工是一种获得具有优异性能的共混物的便捷,经济高效且环保的技术。

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