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通过超声破碎揭示单根醋酸纤维素电纺丝的分级机械强度

Revealing the Hierarchical Mechanical Strength of Single Cellulose Acetate Electrospun Filaments through Ultrasonic Breakage.

作者信息

Avó João, Fernandes Susete N, Godinho Maria H

机构信息

Departamento de Ciência dos Materiais and CENIMAT/I3N, Faculdade de Ciências e Tecnologia, Universidade Nova de Lisboa, 2829-516, Caparica, Portugal.

出版信息

Macromol Rapid Commun. 2015 Jun;36(12):1166-70. doi: 10.1002/marc.201500087. Epub 2015 Apr 29.

Abstract

The tensile strength of single cellulose acetate electrospun fibers is determined through sonication-induced fragmentation in water using a model previously developed by Terentjev and co-workers. The fragmentation of the electrospun fibers results in a gradual shortening of their length until a constant modal length is achieved. A single electrospun CA fiber tensile strength of ≈ 150 MPa (55-280 MPa) is determined based on fracture statistics. It is also observed that the fragmented fibers show bunches of nanofilaments at their ends with similar diameters to those of round structures observed in the cross-section of the initial electrospun fibers (≈ 38 nm). The sonication of these nanofilaments gives rise to spherical particles with similar diameter dimensions, which allows the estimation of a value of the tensile strength of the order of 2 MPa for these nanostructures. The aggregation and the alignment of the nano filaments inside the electrospun fiber should be the source of its higher strength value.

摘要

使用Terentjev及其同事先前开发的模型,通过在水中超声诱导破碎来测定单根醋酸纤维素电纺纤维的拉伸强度。电纺纤维的破碎导致其长度逐渐缩短,直至达到恒定的模态长度。基于断裂统计,确定单根电纺CA纤维的拉伸强度约为150 MPa(55 - 280 MPa)。还观察到,破碎后的纤维在其末端呈现出纳米丝束,其直径与初始电纺纤维横截面中观察到的圆形结构的直径相似(约38 nm)。这些纳米丝的超声处理产生了具有相似直径尺寸的球形颗粒,这使得能够估计这些纳米结构的拉伸强度值约为2 MPa。电纺纤维内部纳米丝的聚集和排列应该是其较高强度值的来源。

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