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未知蜘蛛丝的力学性能与威布尔尺度律。

Mechanical Properties and Weibull Scaling Laws of Unknown Spider Silks.

机构信息

Laboratory of Bio-inspired, Bionic, Nano, Meta Materials & Mechanics, Department of Civil, Environmental and Mechanical Engineering, University of Trento, Via Mesiano, 77, 38123 Trento, Italy.

Queen Mary University of London, Mile End Rd, London E1 4NS, UK.

出版信息

Molecules. 2020 Jun 26;25(12):2938. doi: 10.3390/molecules25122938.

Abstract

Spider silks present extraordinary mechanical properties, which have attracted the attention of material scientists in recent decades. In particular, the strength and the toughness of these protein-based materials outperform the ones of many man-made fibers. Unfortunately, despite the huge interest, there is an absence of statistical investigation on the mechanical properties of spider silks and their related size effects due to the length of the fibers. Moreover, several spider silks have never been mechanically tested. Accordingly, in this work, we measured the mechanical properties and computed the Weibull parameters for different spider silks, some of them unknown in the literature. We also measured the mechanical properties at different strain rates for the dragline of the species . For the same species, we measured the strength and Weibull parameters at different fiber lengths. In this way, we obtained the spider silk scaling laws directly and according to Weibull's prediction. Both length and strain rates affect the mechanical properties of spider silk, as rationalized by Weibull's statistics.

摘要

蜘蛛丝具有非凡的机械性能,这引起了材料科学家近几十年来的关注。特别是,这些基于蛋白质的材料的强度和韧性超过了许多人造纤维。不幸的是,尽管人们对此非常感兴趣,但由于纤维的长度,对蜘蛛丝的机械性能及其相关的尺寸效应还没有进行统计学研究。此外,一些蜘蛛丝从未进行过机械测试。因此,在这项工作中,我们测量了不同蜘蛛丝的机械性能并计算了威布尔参数,其中一些在文献中是未知的。我们还测量了物种拖丝的不同应变速率下的机械性能。对于同一物种,我们测量了不同纤维长度下的强度和威布尔参数。通过这种方式,我们根据威布尔的预测直接获得了蜘蛛丝的标度律。长度和应变速率都影响蜘蛛丝的机械性能,这可以用威布尔统计学来解释。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5e58/7355793/e054ac96c82a/molecules-25-02938-g001.jpg

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