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Influence of Annealing and Biaxial Expansion on the Properties of Poly(l-Lactic Acid) Medical Tubing

机译:退火和双轴膨胀对聚(L-乳酸)医用管性能的影响

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摘要

Poly-l-lactic acid (PLLA) is one of the most common bioabsorbable materials in the medical device field. However, its use in load-bearing applications is limited due to its inferior mechanical properties when compared to many of the competing metal-based permanent and bioabsorbable materials. The objective of this study was to directly compare the influence of both annealing and biaxial expansion processes to improve the material properties of PLLA. Results showed that both annealing and biaxial expansion led to an overall increase in crystallinity and that the crystallites formed during both processes were in the α’ and α forms. 2D-WAXS patterns showed that the preferred orientation of crystallites formed during annealing was parallel to the circumferential direction. While biaxial expansion resulted in orientation in both axial and circumferential directions, with relatively equal sized crystals in both directions, Da (112 Å) and Dc (97 Å). The expansion process had the most profound effect on mechanical performance, with a 65% increase in Young’s modulus, a 45% increase in maximum tensile stress and an 18-fold increase in strain at maximum load. These results indicate that biaxially expanding PLLA at a temperature above Tcc is possible, due to the high strain rates associated with stretch blow moulding.
机译:聚-1-乳酸(PLLA)是医疗设备领域中最常见的生物可吸收材料之一。但是,由于与许多竞争的基于金属的永久性和生物吸收性材料相比,其机械性能较差,因此其在承重应用中的使用受到限制。这项研究的目的是直接比较退火和双轴膨胀工艺对改善PLLA材料性能的影响。结果表明,退火和双轴膨胀均导致结晶度整体增加,并且在两个过程中形成的微晶均为α'和α形式。 2D-WAXS图表明,退火过程中形成的微晶的优选取向平行于圆周方向。虽然双轴膨胀导致在轴向和圆周方向上取向,但在两个方向上具有相对相等大小的晶体Da(112Å)和Dc(97Å)。膨胀过程对机械性能的影响最为深远,在最大载荷下,杨氏模量增加了65%,最大拉应力增加了45%,应变增加了18倍。这些结果表明,由于与拉伸吹塑相关的高应变速率,在高于Tcc的温度下双轴膨胀的PLLA是可能的。

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