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Ultrastructure of Insect and Spider Cocoon Silks

机译:昆虫和蜘蛛茧丝的超微结构

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摘要

Despite much interest in the extraordinary mechanical properties of silks, the structure of native silk fibers is still not fully understood. In the present study, the morphology, topography, and organization of insect and spider cocoon silks were investigated using a range of imaging methods. Field emission scanning electron microscopy was used to observe transverse and longitude structures in silk fibers subjected to tensile fracturing, freeze fracturing, or polishing. In addition, ultrathin sections of silk brins embedded in resin were examined using transmission electron microscopy. Finally, dry silk brins were examined by confocal microscopy. The results confirmed the existence of well-oriented bundles of nanofibrils in all the silks examined and gave an indication of a hierarchical construction of the brin. Observed separation of the microfibrils in fractured brins suggests that the multifibrillar structure of the silk fiber contributes to toughness by allowing dissipation of energy in the controlled propagation of cracks.
机译:尽管人们对丝绸的非凡机械性能非常感兴趣,但天然丝绸纤维的结构仍未得到充分了解。在本研究中,使用多种成像方法研究了昆虫和蜘蛛茧丝的形态,地形和组织。场发射扫描电子显微镜用于观察丝纤维中拉伸和断裂,冷冻断裂或抛光后的横向和经度结构。另外,使用透射电子显微镜检查了嵌入树脂中的丝蛋白的超薄切片。最后,通过共聚焦显微镜检查了干燥的蚕丝。结果证实在所有检查的丝中均存在取向良好的纳米纤维束,并表明了纤维蛋白的层次结构。观察到断裂的布林中微纤维的分离表明,丝纤维的多纤维结构通过允许在受控的裂纹扩展中耗散能量而有助于韧性。

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