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高度取向长支链聚乳酸的多重形状记忆行为及其恢复机制。

Multiple shape memory behavior of highly oriented long-chain-branched poly(lactic acid) and its recovery mechanism.

机构信息

School of Engineering, Design and Technology, University of Bradford, Bradford, United Kingdom.

出版信息

J Biomed Mater Res A. 2019 Apr;107(4):872-883. doi: 10.1002/jbm.a.36604. Epub 2019 Jan 21.

Abstract

The shape memory effect of highly oriented long-chain-branched poly(lactic acid) (LCB-PLA) prepared through solid-phase die drawing technology was studied by comparison with PLA. When the recovery temperature increased from 60°C to 120°C, for PLA, only one-step recovery at about 80°C can be observed and the recovery ratio was below 21.5%, while, for LCB-PLA, multiple recovery behavior with high recovery ratio of 78.8% can be achieved. For oriented PLA, the recovery curve of the final sample showed the same trend with that of sample suffering just free drawing; while for oriented LCB-PLA, the recovery curve of the final sample showed the same trend with that of sample suffering just die drawing. After shape recovery, the mechanical properties of LCB-PLA showed a linear downward trend with the recovery temperature. Together with amorphous phase, the oriented mesomorphic phase, which formed during solid die drawing, can act as switching domains. And thus, upon heating, the chain segment of amorphous phase relaxed at first and triggered the first macroscopical shape recovery, leading to the decrease of long period (L and the thickness of the amorphous layer (L ). Then, with further increasing temperature, the oriented mesomorphic phase gradually relaxed resulting subsequently multi-shape recovery, and the L and the L further decreased. Therefore, by regulating the recovery temperature of oriented LCB-PLA, the shape recovery ratio and mechanical strength can be controlled effectively, and thus the self-reinforced and self-fastening effect can be achieved simultaneously for PLA as bone fixation material. © 2019 Wiley Periodicals, Inc. J Biomed Mater Res Part A: 107A: 872-883, 2019.

摘要

通过固相模拉伸技术制备的高度取向长支链聚乳酸(LCB-PLA)的形状记忆效应通过与 PLA 的对比研究得到了研究。当回复温度从 60°C 升高到 120°C 时,对于 PLA,只能观察到约 80°C 的单步回复,回复率低于 21.5%,而对于 LCB-PLA,可实现具有 78.8%高回复率的多步回复行为。对于取向 PLA,最终样品的回复曲线与仅自由拉伸的样品的回复曲线趋势相同;而对于取向的 LCB-PLA,最终样品的回复曲线与仅模拉伸的样品的回复曲线趋势相同。形状回复后,LCB-PLA 的力学性能随回复温度呈线性下降趋势。与非晶相一起,在固态模拉伸过程中形成的取向中间相可以作为开关域。因此,加热时,非晶相的链段首先松弛并引发第一次宏观形状回复,导致长周期(L)和非晶层厚度(L)的降低。然后,随着温度的进一步升高,取向中间相逐渐松弛,随后发生多次形状回复,L 和 L 进一步降低。因此,通过调节取向 LCB-PLA 的回复温度,可以有效控制形状回复率和力学强度,从而实现 PLA 作为骨固定材料的自增强和自紧固效果。© 2019 年 Wiley 期刊出版公司。J 生物医学材料研究 A 部分:107A:872-883,2019 年。

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