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Thermal and thermomechanical behaviour of polycaprolactone and starch/polycaprolactone blends for biomedical applications

机译:聚己内酯和淀粉/聚己内酯共混物在生物医学应用中的热力学和热力学行为

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摘要

Polycaprolactone (PCL) and starch/PCL blends (SPCL) are shown to have the potential to be used in a range of biomedical applications and can be processed with conventional melting-based procedures. In this paper, the thermal and thermomechanical analyses of PCL and SPCL were performed, using DSC, optical microscopy and DMA. Starch effectively increased the non-isothermal crystallisation rate of PCL. Non-isothermal crystallisation kinetics was analyzed using Ozawa model, and a method, which combines the theories of Avrami and Ozawa. Starch effectively reinforced PCL and enhanced its damping properties, which indicated that SPCL could be more suitable than PCL in some biomedical applications, as it might help in the dissipation of the mechanical energy generated by the patient movements.
机译:聚己内酯(PCL)和淀粉/ PCL共混物(SPCL)被证明具有在一系列生物医学应用中使用的潜力,可以通过传统的基于熔融的方法进行加工。在本文中,使用DSC,光学显微镜和DMA对PCL和SPCL进行了热力学和热力学分析。淀粉有效地提高了PCL的非等温结晶速率。使用Ozawa模型分析了非等温结晶动力学,并结合了Avrami和Ozawa的方法。淀粉有效地增强了PCL并增强了其阻尼性能,这表明SPCL在某些生物医学应用中可能比PCL更合适,因为它可能有助于消散患者运动产生的机械能。

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