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Crack bridging modelling in Bioglass (R) based scaffolds reinforced by poly-vinyl alcohol/microfibrillated cellulose composite coating

机译:聚乙烯醇/微纤化纤维素复合涂层增强的基于Bioglass(R)的支架中的裂纹桥接模型

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The paper deals with crack bridging modelling in Bioglass((R)) based scaffolds due the presence of a special polymer coating. This includes a careful modelling of the scaffold which is based on x-ray computed micro-tomography (micro-CT) scans and identification of bridging mechanism with the aid of extensive fractographic observations of coated, broken struts. A replacement of the real structure of scaffold by a periodic model utilizing Kelvin cell whose size corresponds to the mean cell size of the real foam is discussed. The struts of the idealized foam are modelled using the beam elements. A detailed computational analysis of crack bridging due to coating film fibrils under plane strain conditions is presented and an improvement of fracture resistance of coated scaffolds is explained. (c) 2017 Elsevier Ltd. All rights reserved.
机译:由于存在特殊的聚合物涂层,本文涉及了基于Bioglass(R)的脚手架的裂缝桥接建模。这包括基于X射线计算机断层扫描(micro-CT)扫描对支架进行仔细建模,并借助对涂层,断裂的支杆进行广泛的分形观察来识别桥接机制。讨论了使用开尔文单元的周期模型替换支架的实际结构的方法,开尔文单元的大小对应于实际泡沫的平均单元大小。使用梁单元对理想泡沫的支柱进行建模。提出了在平面应变条件下由涂膜原纤维引起的裂纹桥接的详细计算分析,并解释了涂层支架的抗断裂性的提高。 (c)2017 Elsevier Ltd.保留所有权利。

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