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Studies on the Geometrical Design of Spider Webs for Reinforced Composite Structures

机译:增强复合结构蜘蛛网几何设计研究

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摘要

Spider silk is an astonishingly tough biomaterial that consists almost entirely of large proteins. Studying the secrets behind the high strength nature of spider webs is very challenging due to their miniature size. In spite of their complex nature, researchers have always been inspired to mimic Nature for developing new products or enhancing the performance of existing technologies. Accordingly, the spider web can be taken as a model for optimal fiber orientation for composite materials to be used in critical structural applications. In this study an attempt is made to analyze the geometrical characteristics of the web construction building units such as spirals and radials. As a measurement tool, we have used a developed MATLAB algorithm code for measuring the node to node of rings and radials angle of orientation. Spider web image samples were collected randomly from an ecological niche with black background sample collection tools. The study shows that the radial angle of orientation is 12.7 degrees with 5 mm distance for the spirals’ mesh size. The extracted geometrical numeric values from the spider web show moderately skewed statistical data. The study sheds light on spider web utilization to develop an optimized fiber orientation reinforced composite structure for constructing, for instance, shell structures, pressure vessels and fuselage cones for the aviation industry.
机译:蜘蛛丝是一种惊人的强硬生物材料,其几乎完全由大蛋白质组成。研究蜘蛛网的高强度性质背后的秘密是由于其微型尺寸而非常具有挑战性。尽管他们复杂的性质,研究人员一直受到影响以模仿开发新产品或提高现有技术的性能。因此,可以将蜘蛛网作为用于临界结构应用的复合材料的最佳纤维取向的模型。在该研究中,尝试分析螺旋和径向等网施工构建单元的几何特征。作为测量工具,我们使用了开发的MATLAB算法代码,用于测量节点到环的节点和径向方向角度。蜘蛛网图像样本随机从生态利基随机收集,黑色背景样品收集工具。该研究表明,取向的径向角度为12.7度,螺旋网尺寸为5mm距离。蜘蛛网中提取的几何数值显示了适度偏斜的统计数据。该研究揭示了蜘蛛网利用的光,开发了用于构造的优化的纤维取向增强复合结构,例如用于航空工业的壳结构,压力容器和机身锥。

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