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首页> 外文期刊>The Journal of Experimental Biology >Quasistatic and continuous dynamic characterization of the mechanical properties of silk from the cobweb of the black widow spider Latrodectus hesperus
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Quasistatic and continuous dynamic characterization of the mechanical properties of silk from the cobweb of the black widow spider Latrodectus hesperus

机译:黑寡妇蜘蛛Latrodectus hesperus蜘蛛网的丝绸力学性能的准静态和连续动态表征

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摘要

Spider silks are among the strongest and toughest known materials, but investigation of these remarkable properties has been confined largely to orb-weaving spiders. We investigated the mechanical performance of silk from the cobweb-weaving spider Latrodectus hesperus. Both silk from the scaffolding region of the web and sticky gumfooted capture lines had material properties similar to the major ampullate silk that orb weavers use as the framework for their orb webs. Major ampullate fibers obtained from anaesthetized Latrodectus spiders were similar, but exhibited increased stiffness and reduced extensibility. Novel continuous dynamic analysis of the silks revealed that the loss tangent (tan delta) increased rapidly during the first 2-3% of extension and reached a maximum near the yield point of fibers. The loss tangent then rapidly declined at an ever-decreasing rate until failure. We suggest that these data support molecular models for the mechanics of spider silk. We also demonstrate that the addition of sticky aggregate glue to the ends of the gumfooted lines modulates their mechanical performance - reducing stiffness and increasing extensibility. The storage modulus of viscid regions of the gumfooted lines was much lower than dry regions. This may be explained by disruption of hydrogen bonding within the amorphous regions of the fibers due to hydration from the glue.
机译:蜘蛛丝是已知的最坚固和最坚韧的材料之一,但是对这些非凡性能的研究主要限于球形编织蜘蛛。我们研究了蜘蛛网编织的蜘蛛Latrodectus hesperus的丝绸的机械性能。来自网状结构脚手架区域的丝和粘性足状捕获线都具有与球织工用作其网状结构框架的主要壶腹丝相似的材料特性。从麻醉的Latrodectus蜘蛛获得的主要壶腹纤维相似,但显示出增加的刚度和降低的延展性。新型连续丝动力学分析表明,损耗正切(tanδ)在伸长的前2-3%内迅速增加,并在纤维的屈服点附近达到最大值。然后,损耗角正切以不断下降的速度迅速下降,直到出现故障。我们建议这些数据支持蜘蛛丝力学的分子模型。我们还证明,将胶状聚集胶粘剂添加到齿形线的末端可调节其机械性能-降低刚度并增加可扩展性。齿状线的粘性区域的储能模量远低于干燥区域。这可以解释为由于胶的水合作用而破坏了纤维的无定形区内的氢键。

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