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增塑剂对用于生物医学应用的丝素蛋白/海藻酸钠生物复合材料在应力松弛过程后的力学、结构、热学和应变恢复性能的影响。

The influence of plasticizer on the mechanical, structural, thermal and strain recovery properties following stress-relaxation process of silk fibroin/sodium alginate biocomposites for biomedical applications.

作者信息

Aksakal Baki, Kaplan Zehra, Turhan Kadir

机构信息

Department of Physics, Yildiz Technical University, Istanbul, Turkey.

Department of Physics, Yildiz Technical University, Istanbul, Turkey.

出版信息

J Mech Behav Biomed Mater. 2025 Jan;161:106797. doi: 10.1016/j.jmbbm.2024.106797. Epub 2024 Nov 3.

DOI:10.1016/j.jmbbm.2024.106797
PMID:39504783
Abstract

The influence of plasticizer glycerol (GLY) on the mechanical, structural, and thermal properties of silk fibroin (SF)/sodium alginate (SA) biocomposite films was investigated in detail. As the SF/SA ratio increased up to 65%, the SF content significantly improved the Tensile strength (σ), Young's modulus (E) but reduced the elongation at break (ε). To modify and enhance the elasticity and flexibility of the biocomposite films, the GLY as a plasticizer was used at different ratio from 20 to 50% for each SF/SA biocomposite films. Although the extensibility of the films was improved greatly with increasing GLY ratio, σ and E reduced significantly. The effect was observed more apparently for the GLY ratio starting from 35%. It was also shown that crystallinity index in the Amide I region increased as the SF/SA ratio increased to 65%. Increasing SF content improved the thermal stability of the SF/SA biocomposites. The XRD results showed that crystallinity was increased as SF/SA ratio increased. Stress-relaxation of SF/SA (30%) biocomposite films plasticized with GLY revealed that each kind of plasticized films showed a viscoelastic behavior and a fast relaxation in the first stage (1-2 min) of the processes and then continued slowly. The GLY increased the extensibility and elasticity limit of the SF/SA (30%) composite films. During the strain recovery processes, the plasticized composite films recovered completely in a quite shorter time than that of unplasticized films. It was observed higher the GLY content, the recovery times became shorter.

摘要

详细研究了增塑剂甘油(GLY)对丝素蛋白(SF)/海藻酸钠(SA)生物复合膜的力学、结构和热性能的影响。随着SF/SA比例增加至65%,SF含量显著提高了拉伸强度(σ)、杨氏模量(E),但降低了断裂伸长率(ε)。为了改善和增强生物复合膜的弹性和柔韧性,对于每种SF/SA生物复合膜,以20%至50%的不同比例使用GLY作为增塑剂。尽管随着GLY比例增加,膜的延展性大大提高,但σ和E显著降低。从35%的GLY比例开始,这种影响更为明显。还表明,随着SF/SA比例增加至65%,酰胺I区域的结晶度指数增加。增加SF含量提高了SF/SA生物复合材料的热稳定性。XRD结果表明,随着SF/SA比例增加,结晶度增加。用GLY增塑的SF/SA(30%)生物复合膜的应力松弛表明,每种增塑膜在过程的第一阶段(1 - 2分钟)表现出粘弹性行为和快速松弛,然后缓慢持续。GLY提高了SF/SA(30%)复合膜的延展性和弹性极限。在应变恢复过程中,增塑复合膜比未增塑膜在更短的时间内完全恢复。观察到GLY含量越高,恢复时间越短。

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