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Mechanical properties of silk of the Australian golden orb weavers Nephila pilipes and Nephila plumipes

机译:澳大利亚金球织布工Nephila pilipes和Nephila plumipes的丝绸的机械性能

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Silks from orb-weaving spiders are exceptionally tough, producing a model polymer for biomimetic fibre development. The mechanical properties of naturally spun silk threads from two species of Australian orb-weavers,Nephila pilipesandNephilaplumipes, were examined here in relation to overall thread diameter, the size and number of fibres within threads, and spider size.N. pilipes, the larger of the two species, had significantly tougher silk with higher strain capacity than its smaller congener, producing threads with average toughness of 150?MJ?m?3, despite thread diameter, mean fibre diameter and number of fibres per thread not differing significantly between the two species. WithinN. pilipes, smaller silk fibres were produced by larger spiders, yielding tougher threads. In contrast, while spider size was correlated with thread diameter inN. plumipes, there were no clear patterns relating to silk toughness, which suggests that the differences in properties between the silk of the two species arise through differing molecular structure. Our results support previous studies that found that the mechanical properties of silk differ between distantly related spider species, and extends on that work to show that the mechanical and physical properties of silk from more closely related species can also differ remarkably.
机译:球形编织蜘蛛的丝绸非常坚韧,可生产用于仿生纤维开发的模型聚合物。在此检查了两种澳大利亚球型织布机(Nephila pilipes和Nephilaplumipes)天然纺制的丝线的机械性能,涉及总丝线直径,丝线中纤维的大小和数量以及蜘蛛的大小。两个种类中较大的pilipes具有比其较小的同类物显着更坚韧的丝线,具有更高的应变能力,尽管线径,平均纤维直径和每根线的纤维数量没有这两个物种之间的差异很大。在N之内。 pilipes,较小的丝纤维由较大的蜘蛛产生,产生较硬的线。相反,蜘蛛轮的尺寸与螺纹直径inN相关。羽状,没有明确的模式与丝绸韧性有关,这表明两种物种的丝绸之间的性质差异是由不同的分子结构引起的。我们的结果支持先前的研究,这些研究发现远缘蜘蛛物种之间的丝绸机械特性不同,并且在这项工作上进行了扩展,以显示来自更紧密关联物种的丝绸的机械和物理特性也可能存在显着差异。

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