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首页> 外文期刊>Journal of Composite Materials >Regenerated silk matrix composite materials reinforced by silk fibres: Relationship between processing and mechanical properties
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Regenerated silk matrix composite materials reinforced by silk fibres: Relationship between processing and mechanical properties

机译:丝纤维加固的再生丝基质复合材料:加工与机械性能之间的关系

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摘要

Silk is a biocompatible material with remarkable mechanical properties. A variety of composite materials using silk as a matrix or for reinforcement have been prepared for many biological applications. However, although a range of composites containing silk have been designed, the mechanical properties achieved for the regenerated silk (solubilisation+film/matrix or fibre production) remain relatively weak (strength: 30-50MPa). In this study, by combining the high ultimate strength (up to 1GPa) of natural silk fibres and the chemical properties of regenerated silk, we developed a composite based on silk alone. We investigated how to improve the tensile mechanical properties of silk matrices derived from Bombyx mori silkworms by film processing and by incorporating silk fibres, either natural or degummed, that is, without the sericin coating. The structure and orientation modifications of fibroin macromolecules within the matrix were monitored by Raman spectroscopy; unexpectedly it showed that the most amorphous fibroin matrix exhibits the best mechanical behaviour. The mechanical behaviour of regenerated silk-based materials is dependent upon the temperature of evaporation and the filtration of the solution. In summary, a biocompatible composite was obtained here with distinct mechanical properties (strength 100MPa; Young's modulus approximate to 2.5GPa) which can be optimised for focused applications with silk fibres (slow degradation, skeleton of the composite) and silk matrix (fibroin molecules accessible to chemical or biophysical modification).
机译:丝绸是一种生物相容性材料,具有显着的机械性能。已经为许多生物学应用制备了使用丝绸作为基质或增强物的各种复合材料。然而,尽管已经设计了含有丝的一系列复合材料,但是对再生丝(溶解+薄膜/基质或纤维生产)实现的机械性能保持相对较弱(强度:30-50MPa)。在这项研究中,通过将高终极强度(高达1GPa)的天然丝纤维和再生丝的化学性质组合,我们仅开发了一种基于丝绸的复合材料。我们调查了如何通过薄膜加工提高来自Bombyx Mori蚕的丝基质的拉伸力学性能,并通过掺入天然或脱胶,即没有硅蛋白涂层的丝纤维。通过拉曼光谱监测基质内肌蛋白大分子的结构和取向改性;意外地表明,最无定形的肌素矩阵表现出最佳的机械行为。再生丝基材料的力学行为取决于蒸发的温度和溶液的过滤。总之,这里获得了生物相容性的复合材料,具有不同的机械性能(强度& 100MPa;杨氏模量近似为2.5GPa),这可以针对具有丝纤维的聚焦应用(缓慢降解,复合材料的骨骼)和丝基质(纤维素)进行优化分子可用于化学或生物物理修饰)。

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