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首页> 外文期刊>Journal of Polymer Science, Part B. Polymer Physics >Confinement mechanism of electrospun polymer nanofiber reinforcement
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Confinement mechanism of electrospun polymer nanofiber reinforcement

机译:静电纺丝聚合物纳米纤维增强的约束机制

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摘要

The sharp increase in elastic modulus of electrospun polymer nanofibers with decrease in their diameters is now a well-known phenomenon. Unfortunately, up to now, the physical reasons resulting in the above size-dependent behavior are unclear. The proposed explanation is based on the confinement concept. A manifesting mechanism of the confinement effect which provides the size-dependent elastic modulus of electrospun polymer nanofibers is discussed. According to this model, the nanofiber polymer matrix contains anisotropic regions consisting of correlated worm-like subchains, partially oriented along the fiber. A fiber elongation is accompanied by relative rotations of the above regions. Confinement effect is that these rotations are hindered by the fiber boundary. As a result, the elastic modulus depends on the fiber diameter. This restriction is dominant for the thin fibers, is decreasing with increase of the fiber diameter, and becomes negligible for thick fibers. Such a behavior is in good agreement with experimental observations.
机译:现在,电纺聚合物纳米纤维的弹性模量随着直径的减小而急剧增加是众所周知的现象。不幸的是,到目前为止,尚不清楚导致上述尺寸依赖性行为的物理原因。提出的解释基于限制概念。讨论了限制效应的体现机理,该机理提供了电纺聚合物纳米纤维的尺寸依赖性弹性模量。根据该模型,纳米纤维聚合物基质包含各向异性区域,该区域由相关的蠕虫状子链组成,部分沿纤维取向。纤维伸长伴随着上述区域的相对旋转。限制作用是这些旋转受到纤维边界的阻碍。结果,弹性模量取决于纤维直径。该限制对于细纤维是主要的,随着纤维直径的增加而减小,而对于粗纤维则可以忽略不计。这种行为与实验观察非常吻合。

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