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首页> 外文期刊>Journal of Dong Hua University >Morphology and Microstructure of Spider Dragline Silk from Araneus Ventricosus
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Morphology and Microstructure of Spider Dragline Silk from Araneus Ventricosus

机译:蜘蛛(Araneus Ventricosus)蜘蛛拉丝的形态和微观结构

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摘要

The spider dragline silk has excellent mechanical properties.The stress- strain curves of dragline silk fibers have intraspecific and intraindividual variability because of the spider's active control during spinning process. To investigate the relationship between the morphology of dragline silk fibers and spinning conditions, four samples were made at the reeling rates of 1 mm/s, 20 mm/s, 43.5 mm/s and 110 mm/s from the major ampullate glands of Araneus Ventricosus and the other two of dragline silks were prepared from a crawling or dropping spider. The surface microstructure and nanofibril characteristic were analyzed with atomic force microscopy (AFM). AFM images of 2 000 nm * 2 000 run and 500 nm * 500 run of these samples showed that the spinning condition influenced the surface roughness and fibril size, while AFM images of 200 ran * 200 nm clearly displayed that dragline silk of Araneus Ventricosus included sheet macro-conformation structure. These results can facilitate the further investigation of the spinning mechanism of a spider in order to understand mechanical properties and macromolecular structures of dragline silk.
机译:蜘蛛拉丝蚕丝具有优异的机械性能。由于蜘蛛在纺丝过程中的主动控制,拉丝蚕丝纤维的应力-应变曲线具有种内和个体内变异性。为了研究拉铲丝纤维的形态与纺丝条件之间的关系,从Araneus主要壶腹腺以1 mm / s,20 mm / s,43.5 mm / s和110 mm / s的卷取速率制作了四个样品Ventricosus和其他两种拉铲丝由爬行或掉落的蜘蛛制成。用原子力显微镜(AFM)分析了表面微观结构和纳米原纤维特性。这些样品的2000 nm * 2000 run和500 nm * 500 run的AFM图像表明,纺丝条件影响表面粗糙度和原纤维尺寸,而200 ran * 200 nm的AFM图像清楚地表明,包括Araneus Ventricosus的拉铲丝表宏构形结构。这些结果可以促进对蜘蛛的纺丝机理的进一步研究,以了解拉铲丝的机械性能和大分子结构。

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