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Influence of interfacial geometry on the energy absorption capacity and load sharing mechanisms of nacreous composite shells

机译:界面几何形状对复合材料弹壳能量吸收能力和分担机理的影响

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摘要

The excellent mechanical properties of nacreous composites are partly attributed to its staggered microstructure, which is made of multiple layers of mineral tablets bonded through a soft protein matrix. An important parameter that could affect the load sharing mechanism in nacre is the waviness of aragonite tablets. In this work, a continuum model of nacre composite is developed, which takes into account the waviness factor. The tablets are subjected to tensile loading and are initially modeled to have dovetail shapes with varying slopes. The load sharing efficiency of nacre is evaluated through displacements, stresses and strain energy density (SED) of the unit cell. The SEDs of unit cells, tablet and matrix are presented for different overlapping lengths and inclination angles, from which maximum SEDs and optimum overlapping lengths are determined. Parametric studies show that larger inclinations of nacre tablets result in higher energy absorbing capacity. A more general case is also presented, where nacre's platelet is modeled to have sinusoidal waviness of different wavelengths. By varying the wavelength while maintaining the periodicity of the unit cell, stresses, SEDs and displacements are obtained and compared. Analytical results on the optimum waviness of designed unit cells are validated with observed nacreous microstructures. (C) 2015 Elsevier Ltd. All rights reserved.
机译:珍珠质复合材料的优异机械性能部分归因于其交错的微观结构,该微观结构由多层的矿质片剂通过软蛋白基质粘合而成。可能影响珍珠母中负荷分担机制的重要参数是文石片的波纹度。在这项工作中,建立了珍珠复合材料的连续体模型,该模型考虑了波纹度因素。片剂受到拉伸载荷,最初被建模为具有变化斜率的燕尾形状。通过晶胞的位移,应力和应变能密度(SED)评估珍珠母的负载分担效率。给出了针对不同重叠长度和倾斜角度的晶胞,平板和矩阵的SED,从而确定了最大SED和最佳重叠长度。参数研究表明,珍珠母片较大的倾斜度会导致更高的能量吸收能力。还介绍了一个更一般的情况,其中珍珠层的血小板被建模为具有不同波长的正弦波度。通过在保持单位晶格的周期性的同时改变波长,可以获得并比较应力,SED和位移。设计的晶胞最佳波纹度的分析结果已通过观察到的珍珠质微结构得到验证。 (C)2015 Elsevier Ltd.保留所有权利。

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