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Effect of inter-fibre bonding on the fracture of fibrous networks with strong interactions

机译:纤维粘合对强互动纤维网络骨折的影响

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摘要

The mechanical response of cellulose nanopaper composites is investigated using a three-dimensional (3D) finite element fibrous network model with focus on the effect of inter-fibre bonds. It is found that the Young's modulus and strength, for fixed fibre properties, are mainly controlled by the density and strength of the inter-fibre bonds. An increase of the inter-fibre bond density and inter-fibre bond strength results in an increase of both the Young's modulus and strength of the fibrous network materials. The fracture energy of the inter-fibre bonds has a minor effect on the mechanical properties of the cellulose nanopapers. The inter-fibre bond properties and density have a minor effect on the strain to failure of the cellulose nanopaper. The effect of the fibre properties, through the ratio of fibre tensile strength to fibre Young's modulus, has also a significant impact on mechanical response of the network including the strain to failure. (C) 2017 Elsevier Ltd. All rights reserved.
机译:采用三维(3D)有限元纤维网络模型研究了纤维素纳米锅复合材料的机械响应,重点是纤维间键的效果。结果发现,用于固定纤维性能的杨氏模量和强度主要由纤维间键的密度和强度控制。纤维间粘合密度和纤维间粘合强度的增加导致纤维网络材料的杨氏模量和强度的增加。纤维间键的断裂能量对纤维素纳米粉粉末的机械性能具有很小的影响。纤维间粘合性和密度对纤维素纳米玻璃的菌株具有轻微影响。纤维性能通过纤维抗粘度与纤维杨氏模量的比率的影响对网络的机械响应产生了显着影响,包括菌株失效。 (c)2017 Elsevier Ltd.保留所有权利。

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