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PCL 和 PHBV 对 PLLA 二元和三元共混物热性能和力学性能的影响。

Influence of PCL and PHBV on PLLA Thermal and Mechanical Properties in Binary and Ternary Polymer Blends.

机构信息

School of Engineering, Newcastle University, Newcastle upon Tyne NE1 7RU, UK.

Department of Applied Science and Technology, Politecnico di Torino, 10129 Torino, Italy.

出版信息

Molecules. 2022 Nov 7;27(21):7633. doi: 10.3390/molecules27217633.

Abstract

PLLA, PCL and PHBV are aliphatic polyesters which have been researched and used in a wide range of medical devices, and all three have advantages and disadvantages for specific applications. Blending of these materials is an attractive way to make a material which overcomes the limitations of the individual polymers. Both PCL and PHBV have been evaluated in polymer blends with PLLA in order to provide enhanced properties for specific applications. This paper explores the use of PCL and PHBV together with PLLA in ternary blends with assessment of the thermal, mechanical and processing properties of the resultant polymer blends, with the aim of producing new biomaterials for orthopaedic applications. DSC characterisation is used to demonstrate that the materials can be effectively blended. Blending PCL and PHBV in concentrations of 5-10% with PLLA produces materials with average modulus improved by up to 25%, average strength improved by up to 50% and average elongation at break improved by 4000%, depending on the concentrations of each polymer used. PHBV impacts most on the modulus and strength of the blends, whilst PCL has a greater impact on creep behaviour and viscosity. Blending PCL and PHBV with PLLA offers an effective approach to the development of new polyester-based biomaterials with combinations of mechanical properties which cannot be provided by any of the materials individually.

摘要

聚丙交酯(PLLA)、聚己内酯(PCL)和聚羟基丁酸戊酸酯(PHBV)是脂肪族聚酯,已被广泛应用于各种医疗器械的研究和制造中,并且这三种材料在特定应用中都有各自的优势和劣势。这些材料的混合是一种有吸引力的方法,可以制造出一种克服单个聚合物局限性的材料。PCL 和 PHBV 都已在 PLLA 的聚合物共混物中进行了评估,以提供特定应用的增强性能。本文探讨了在三元共混物中使用 PCL 和 PHBV 与 PLLA 一起使用,评估所得聚合物共混物的热、机械和加工性能,目的是为骨科应用生产新的生物材料。DSC 特性分析用于证明材料可以有效地混合。在 PLLA 中混入 5-10%的 PCL 和 PHBV,可以使材料的平均模量提高 25%,平均强度提高 50%,平均断裂伸长率提高 4000%,具体取决于每种聚合物的浓度。PHBV 对共混物的模量和强度影响最大,而 PCL 对蠕变行为和粘度的影响更大。将 PCL 和 PHBV 与 PLLA 混合提供了一种有效的方法,可以开发具有机械性能组合的新型聚酯基生物材料,这些性能组合是任何单一材料都无法提供的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7cb0/9657691/f86286998aed/molecules-27-07633-g001.jpg

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