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聚乳酸/聚丁二酸丁二醇酯可吸收复合材料作为骨折固定板的结晶度、分子量变化和力学性能的研究。

Investigation of crystallinity, molecular weight change, and mechanical properties of PLA/PBG bioresorbable composites as bone fracture fixation plates.

机构信息

Faculty of Engineering, Division of Materials, Mechanics and Structures University of Nottingham, Nottingham NG7 2RD, UK.

出版信息

J Biomater Appl. 2012 Mar;26(7):765-89. doi: 10.1177/0885328210384532. Epub 2010 Dec 1.

Abstract

In this study, bioresorbable phosphate-based glass (PBG) fibers were used to reinforce poly(lactic acid) (PLA). PLA/PBG random mat (RM) and unidirectional (UD) composites were prepared via laminate stacking and compression molding with fiber volume fractions between 14% and 18%, respectively. The percentage of water uptake and mass change for UD composites were higher than the RM composites and unreinforced PLA. The crystallinity of the unreinforced PLA and composites increased during the first few weeks and then a plateau was seen. XRD analysis detected a crystalline peak at 16.6° in the unreinforced PLA sample after 42 days of immersion in phosphate buffer solution (PBS) at 37°C. The initial flexural strength of RM and UD composites was ∼106 and ∼115 MPa, whilst the modulus was ∼6.7 and ∼9 GPa, respectively. After 95 days immersion in PBS at 37°C, the strength decreased to 48 and 52 MPa, respectively as a result of fiber-matrix interface degradation. There was no significant change in flexural modulus for the UD composites, whilst the RM composites saw a decrease of ∼45%. The molecular weight of PLA alone, RM, and UD composites decreased linearly with time during degradation due to chain scission of the matrix. Short fiber pull-out was seen from SEM micrographs for both RM and UD composites.

摘要

在这项研究中,生物可吸收的磷酸盐基玻璃(PBG)纤维被用于增强聚乳酸(PLA)。通过层压堆叠和压缩成型制备了 PLA/PBG 随机垫(RM)和单向(UD)复合材料,纤维体积分数分别为 14%和 18%。UD 复合材料的吸水率和质量变化百分比高于 RM 复合材料和未增强的 PLA。未增强的 PLA 和复合材料的结晶度在前几周内增加,然后达到一个平台。XRD 分析在 37°C 的磷酸盐缓冲溶液(PBS)中浸泡 42 天后,在未增强的 PLA 样品中检测到 16.6°的结晶峰。RM 和 UD 复合材料的初始弯曲强度分别约为 106 和 115 MPa,而模量分别约为 6.7 和 9 GPa。在 37°C 的 PBS 中浸泡 95 天后,由于纤维-基体界面降解,强度分别降至 48 和 52 MPa。UD 复合材料的弯曲模量没有明显变化,而 RM 复合材料的弯曲模量下降了约 45%。由于基体的链断裂,PLA 单体、RM 和 UD 复合材料的分子量在降解过程中随时间呈线性下降。从 RM 和 UD 复合材料的 SEM 显微照片中可以看出短纤维的拔出。

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