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首页> 外文期刊>Journal of the mechanical behavior of biomedical materials >The hidden link between supercontraction and mechanical behavior of spider silks.
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The hidden link between supercontraction and mechanical behavior of spider silks.

机译:蜘蛛丝的超收缩和机械性能之间的隐藏联系。

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The remarkable properties of spider silks have stimulated an increasing interest in understanding the roles of their composition and processing, as well as in the mass-production of these fibers. Previously, the variability in the mechanical properties of natural silk fibers was a major drawback in the elucidation of their behavior, but the authors have found that supercontraction of these fibers allows one to characterize and reproduce the whole range of tensile properties in a consistent way. The purpose of this review is to summarize these findings. After a review of the pertinent mechanical properties, the role of supercontraction in recovering and tailoring the tensile properties is explained, together with an alignment parameter to characterize silk fibers. The concept of the existence of a mechanical ground state is also mentioned. These behaviors can be modeled, and two such models-at the molecular and macroscopic levels-are briefly outlined. Finally, the assessment of the existence of supercontraction in bio-inspired fibers is considered, as this property may have significant consequences in the design and production of artificial fibers.
机译:蜘蛛丝的卓越性能激发了人们对了解其组成和加工作用以及这些纤维的批量生产的兴趣。以前,天然丝纤维机械性能的变化是阐明其行为的主要缺点,但作者发现,这些纤维的超收缩性可以使人们以一致的方式表征和再现整个范围的拉伸性能。本文的目的是总结这些发现。在回顾了相关的机械性能之后,解释了超收缩在恢复和调整拉伸性能中的作用,以及用于表征丝绸纤维的取向参数。还提到了机械基态存在的概念。可以对这些行为进行建模,并简要概述两个这样的模型-在分子水平和宏观水平。最后,考虑对生物启发纤维中超收缩的存在进行评估,因为这种性质可能对人造纤维的设计和生产产生重大影响。

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