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丝形成过程的见解:丝纤维人工纺丝过程中力学性能与结构演变的相关性

Insights into Silk Formation Process: Correlation of Mechanical Properties and Structural Evolution during Artificial Spinning of Silk Fibers.

作者信息

Fang Guangqiang, Huang Yufang, Tang Yuzhao, Qi Zeming, Yao Jinrong, Shao Zhengzhong, Chen Xin

机构信息

National Centre for Protein Science-Shanghai, Institute of Biochemistry and Cell Biology, Shanghai Institutes for Biological Sciences, Chinese Academy of Sciences, Shanghai 201210, People's Republic of China.

National Synchrotron Radiation Laboratory, University of Science and Technology of China, Hefei 230029, People's Republic of China.

出版信息

ACS Biomater Sci Eng. 2016 Nov 14;2(11):1992-2000. doi: 10.1021/acsbiomaterials.6b00392. Epub 2016 Oct 11.

Abstract

The extraordinary comprehensive mechanical properties of animal silk (especially spider and silkworm silk) have led to extensive research on the underlying mechanisms involved. Herein, we selected various regenerated silk fibroin (RSF) fibers by choosing different postdraw conditions in a wet-spinning process developed in this laboratory to study their structure-property relationship. We use synchrotron radiation infrared and X-ray diffraction techniques to monitor the structural differences in these RSF fibers and correlate them with their mechanical properties. The results show that with the increase of post draw-down ratio, the β-sheet content, crystallinity, and molecular orientation in these RSF fibers increase while the crystalline size decreases. The relationship between structural changes and the draw-down ratio reflects the corresponding variation in mechanical properties, namely, an increase in breaking stress with a decline in breaking strain in relation to increases in draw-down ratio. Therefore, these results provide solid and direct evidence on the evolution of structure during the artificial spinning process and on how structure determines the final mechanical performance of silk fibers. We believe this study provides a good background on the relationship between microscopic structure and macroscopic properties in polymer science and may prove useful in the production of high performance materials, not only for silk fibers but also for other natural and synthetic polymeric materials.

摘要

动物丝(尤其是蜘蛛丝和蚕丝)非凡的综合机械性能引发了对其潜在机制的广泛研究。在此,我们通过在本实验室开发的湿法纺丝工艺中选择不同的后拉伸条件,挑选了各种再生丝素蛋白(RSF)纤维,以研究它们的结构-性能关系。我们使用同步辐射红外和X射线衍射技术来监测这些RSF纤维的结构差异,并将其与它们的机械性能相关联。结果表明,随着后拉伸倍率的增加,这些RSF纤维中的β-折叠含量、结晶度和分子取向增加,而晶体尺寸减小。结构变化与拉伸倍率之间的关系反映了机械性能的相应变化,即随着拉伸倍率的增加,断裂应力增加而断裂应变下降。因此,这些结果为人工纺丝过程中结构的演变以及结构如何决定丝纤维的最终机械性能提供了确凿而直接的证据。我们相信这项研究为聚合物科学中微观结构与宏观性能之间的关系提供了良好的背景,并且可能不仅对丝纤维,而且对其他天然和合成聚合物材料在高性能材料生产中证明是有用的。

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