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首页> 外文期刊>The Journal of Experimental Biology >Stretching of supercontracted fibers: a link between spinning and the variability of spider silk
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Stretching of supercontracted fibers: a link between spinning and the variability of spider silk

机译:超伸缩纤维的拉伸:纺丝与蜘蛛丝变异性之间的联系

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摘要

The spinning of spider silk requires a combination of aqueous environment and stretching, and the aim of this work was to explore the role of stretching silk fibers in an aqueous environment and its effect on the tensile properties of spider silk. In particular, the sensitivity of the spider silk tensile behaviour to wet-stretching could be relevant in the search for a relationship between processing and the variability of the tensile properties. Based on this idea and working with MAS silk from Argiope trifasciata orb-web building spiders, we developed a novel procedure that permits modification of the tensile properties of spider silk: silk fibers were allowed to supercontract and subsequently stretched in water. The ratio between the length after stretching and the initial supercontracted length was used to control the process. Tensile tests performed in air, after drying, demonstrated that this simple procedure allows to predictable reproduction of the stress-strain curves of either naturally spun or forcibly silked fibers. These results suggest that the supercontracted state has a critical biological function during the spinning process of spider silk.
机译:蜘蛛丝的纺丝需要在水性环境和拉伸条件下进行结合,这项工作的目的是探讨在水性环境中拉伸丝纤维的作用及其对蜘蛛丝拉伸性能的影响。尤其是,蜘蛛丝拉伸行为对湿拉伸的敏感性在寻找加工与拉伸性能变化之间的关系时可能是相关的。基于此想法,并与来自Argiope trifasciata的蛛网构建蜘蛛的MAS丝一起工作,我们开发了一种新颖的方法,可以改变蜘蛛丝的拉伸性能:允许丝纤维超缩并随后在水中拉伸。拉伸后的长度与初始超收缩长度之间的比率用于控制过程。干燥后,在空气中进行的拉伸试验表明,这种简单的过程可以预测天然纺丝或强力蚕丝纤维的应力-应变曲线的可再现性。这些结果表明,超收缩状态在蜘蛛丝的纺丝过程中具有至关重要的生物学功能。

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