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Collapse analysis of nanofibres

机译:纳米纤维的塌陷分析

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Continuous nanofibres fabricated by the electrospinning technique have found increasing applications (e.g. nanofibre composites, nanofibre devices, bioengineering tissue scaffolding, etc). For a nanofibre network subjected to a small external perturbation, the fibre segments within the network may deflect and stick to each other under the condition that their surface adhesion energy overcomes the elastic strain energy induced by fibre bending. Therefore, this paper aims to study adhesion-induced nanofibre collapse and relevant criteria. A simple fibre collapse model was proposed, which is based on the contact of two deflected elastic filaments under surface adhesion. Four fundamental fibre collapse modes (i.e. fibre-flat substrate, parallel fibres, orthogonal fibres and fibres at arbitrary angle) were considered, and corresponding collapse criteria were determined in explicit forms. Effects of fibre elasticity, surface adhesion and fibre geometries on the collapse criterion were explored in a numerical manner. Results show that for a fibre segment pair at a relatively large angle, the critical distance to induce the fibre collapse is independent of the fibre radius. This distance is a function of the fibre aspect ratio and the material intrinsic length (gamma/E, where gamma is the surface energy and E is Young's modulus). The fibre collapse model developed in this study can be used as the theoretical basis for design and failure analysis of nanofibre networks and nanofibre devices, among others.
机译:已经发现通过电纺丝技术制造的连续纳米纤维的应用正在增加(例如,纳米纤维复合材料,纳米纤维装置,生物工程组织支架等)。对于经受小的外部扰动的纳米纤维网络,网络中的纤维段在其表面粘附能克服了由纤维弯曲引起的弹性应变能的条件下可能彼此偏转并粘附。因此,本文旨在研究粘附引起的纳米纤维塌陷及相关标准。提出了一种简单的纤维塌陷模型,该模型基于两条挠曲的弹性长丝在表面粘附下的接触。考虑了四种基本的纤维塌陷模式(即,扁平纤维基材,平行纤维,正交纤维和任意角度的纤维),并以显式形式确定了相应的塌陷标准。以数值方式探讨了纤维弹性,表面粘附性和纤维几何形状对塌陷标准的影响。结果表明,对于较大角度的纤维段对,引起纤维塌陷的临界距离与纤维半径无关。该距离是纤维长宽比和材料固有长度(γ/ E,其中γ是表面能,E是杨氏模量)的函数。在这项研究中开发的纤维塌陷模型可以用作纳米纤维网络和纳米纤维设备的设计和失效分析的理论基础。

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