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Characterization of polycaprolactone and starch blends for potential application within the biomaterials field

机译:聚己内酯和淀粉共混物的表征,可在生物材料领域内潜在应用

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Thermally blending starch and polycaprolactone with the compatibilizer methylenediphenyl diisocyanate?(MDI)?distributed in the polyester phase had been previously confirmed to enhance the mechanical properties and interface between the two phases of the blends. In this study, blends of polycaprolactone with various levels of starch and 1.0% MDI were prepared through melt blending using a twin-screw extruder, and an extensive characterization including mechanical properties, microstructure, melting, thermo-mechanical behaviour, hydrophilicity and degradation in Hank’s solution were further carried out, aiming at an alternative for orthopaedic applications. The results demonstrated that MDI had improved the mechanical properties of polycaprolactone?(PCL)?and starch blends, but an optimal ratio of starch level and MDI content was required, which had been found to be 1.0 wt % MDI with 30 wt % starch content. The present study indicated the starch and polycaprolactone blends may present a significant potential for biomedical applications.
机译:先前已经证实,将淀粉和聚己内酯与分布在聚酯相中的增容剂亚甲基二苯基二异氰酸酯?(MDI)?进行热共混可以增强共混物两相的机械性能和界面。在这项研究中,使用双螺杆挤出机通过熔融共混制备了各种含量的淀粉和1.0%MDI含量的聚己内酯共混物,其广泛的特性包括机械性能,微观结构,熔融,热机械行为,亲水性和汉克纤维的降解。针对骨科应用的替代方案,进一步进行了解决。结果表明,MDI改善了聚己内酯?(PCL)?和淀粉共混物的机械性能,但要求淀粉含量和MDI含量的最佳比例为1.0 wt%MDI和30 wt%淀粉含量。本研究表明,淀粉和聚己内酯的混合物可能为生物医学应用提供巨大潜力。

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