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Bimaterial 3D printing and numerical analysis of bio-inspired composite structures under in-plane and transverse loadings

机译:平面和横向载荷下双材料3D打印和仿生复合结构的数值分析

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摘要

This work presents a novel design, additive manufacturing and modeling approach of three dimensional voronoi-based composite structures that closely mimic nacre's multilayer composite structure. The hierarchical structure of natural nacre is mimicked to produce multilayer composite laminates assembled from three dimensional polygonal tablets bonded with organic adhesives. Furthermore, various complex geometries of the nacreous shells observed from the nature, such as the dome-shaped structure, are developed into three dimensional designs. A novel mapping algorithm is developed to generate complex structures of nacre-like composites that are readily fabricated by unique dual-material 3D printing technology. Preliminary 3D-printed prototypes with complex shapes and material combinations are presented. A novel numerical model of the nacreous composite is proposed, which includes tablet cohesive bonds and interlaminate adhesive layers to mimic the soft organic polymer matrix. The nacreous model is validated against a natural nacre specimen under uniaxial loading. To exemplify a potential application, a scaled model of a nacre-mimetic composite made of Aluminum tablets and Vinylester adhesive is constructed and assessed against blast-induced impulsive loading. The performance of the nacre-like composite panel is investigated in terms of deformation and energy dissipation. (C) 2016 Elsevier Ltd. All rights reserved.
机译:这项工作提出了一种新颖的设计,增材制造和建模方法,该方法基于三维以voronoi为基础的复合结构,该结构紧密地模仿了珍珠质的多层复合结构。模仿天然珍珠层的分层结构,以生产多层复合层压板,该层压板由三维多边形片剂与有机粘合剂粘合而成。此外,从自然界中观察到的各种复杂的珍珠壳几何形状,例如圆顶形结构,已发展为三维设计。开发了一种新颖的映射算法以生成类似珍珠质的复合物的复杂结构,这些结构很容易通过独特的双材料3D打印技术制造。介绍了具有复杂形状和材料组合的3D打印原型。提出了一种新型的珍珠质复合材料的数值模型,该模型包括片剂内聚键和层间粘合层,以模仿软有机聚合物基质。珠光模型针对单轴载荷下的天然珠光样本进行了验证。为了举例说明潜在的应用,构建了由铝片和乙烯基酯粘合剂制成的珍珠质模拟复合材料的比例模型,并针对爆炸引起的脉冲载荷进行了评估。从变形和能量耗散的角度研究了珍珠质复合板的性能。 (C)2016 Elsevier Ltd.保留所有权利。

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