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Synthetic Spider Silk Production on a Laboratory Scale
Published on: July 18, 2012
蜘蛛丝的非线性材料行为产生了坚固的蜘蛛网
Steven W Cranford1, Anna Tarakanova, Nicola M Pugno
1Laboratory for Atomistic and Molecular Mechanics, Department of Civil and Environmental Engineering, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, USA.
Nature
|February 3, 2012
概括
蜘蛛丝是蜘蛛丝.
科学领域:
- 材料科学 材料科学 材料科学
- 生物模拟学是一种生物模拟学.
- 结构力学 结构力学
背景情况:
- 像骨头和一样的自然材料表现出对功能进行优化的设计.
- 蜘蛛丝具有卓越的机械性能,但它们在网络完整性中的作用尚不清楚.
- 现有的研究重点是丝的分子设计和网络几何,而不是其对网络性能的机械贡献.
研究的目的:
- 调查蜘蛛丝的机械特性如何有助于蜘蛛网的完整性和性能.
- 为了确定丝的特定机械性能,这对网的强度至关重要.
- 了解丝在网络力学中的非线性应力-应变行为的作用.
主要方法:
- 进行了网状变形实验.
- 执行网络力学模拟. 执行网络力学模拟.
- 将非线性丝行为与线性弹性和弹性-塑料模型进行比较.
主要成果:
- 确定丝的非线性应力反应 (软化,然后硬化) 对于局部化变形和确保网页强度至关重要.
- 证明与线性或软化模型相比,非线性应力反应增强了对结构缺陷的抵抗力.
- 表明丝在小变形时的刚性在风等分布式负载下保持了网状的完整性.
结论:
- 蜘蛛网的优越性能取决于丝线的非线性应力-应变行为,而不仅仅是最终的强度.
- 丝的独特机械特性,结合网络几何学,创造了强大而有弹性的结构.
- 了解这种非线性行为为设计先进的人工材料提供了洞察力.
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