Nature:科学家发现蛛丝强度5倍等量钢丝

 坚韧如钢、交错如织的蛛网无疑是大自然的神奇造物,富有弹性的蛛网甚至能抵御飓风的侵袭。2月2日,《自然》杂志上刊登了一项研究成果表明,美国的科学家们正试图揭示蛛网的奥秘,希望能将其用于未来的建筑设计或耐用材料的研发。
 

美国麻省理工学院的研究人员表示,蛛网的成功之处在于:即使有多根蛛丝断掉,蛛网也不会垮掉,甚至会变得更牢固。实验中,研究人员在蛛网各处去掉了总计10%的蛛丝,蛛网的韧性不单没因此而降低,却反而增强了10%。
 
研究人员发现,这种韧性不单是源自每根蛛丝在质地上的强度,也同时源自蛛丝的内部结构。蛛丝纤维能够根据所承受压力的不同而变化柔韧程度,这种特性是其他任何自然纤维或人造纤维所不具有的。科学家们已经证明,蛛丝的强度是等质量钢丝的5倍。实验表明,蛛网的韧性是其他网格的6倍有余。(生物谷 Bioon.com)

Nonlinear material behaviour of spider silk yields robust webs

Steven W. Cranford, Anna Tarakanova, Nicola M. Pugno& Markus J. Buehler

Natural materials are renowned for exquisite designs that optimize function, as illustrated by the elasticity of blood vessels, the toughness of bone and the protection offered by nacre. Particularly intriguing are spider silks, with studies having explored properties ranging from their protein sequence6 to the geometry of a web. This material system, highly adapted to meet a spider’s many needs, has superior mechanical properties. In spite of much research into the molecular design underpinning the outstanding performance of silk fibres, and into the mechanical characteristics of web-like structures, it remains unknown how the mechanical characteristics of spider silk contribute to the integrity and performance of a spider web. Here we report web deformation experiments and simulations that identify the nonlinear response of silk threads to stress—involving softening at a yield point and substantial stiffening at large strain until failure—as being crucial to localize load-induced deformation and resulting in mechanically robust spider webs. Control simulations confirmed that a nonlinear stress response results in superior resistance to structural defects in the web compared to linear elastic or elastic–plastic (softening) material behaviour. We also show that under distributed loads, such as those exerted by wind, the stiff behaviour of silk under small deformation, before the yield point, is essential in maintaining the web’s structural integrity. The superior performance of silk in webs is therefore not due merely to its exceptional ultimate strength and strain, but arises from the nonlinear response of silk threads to strain and their geometrical arrangement in a web.

2012细胞治疗技术研讨会

主办:中国医师协会

承办:生物谷 合作单位:广州军区广州总医院

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