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A comprehensive review of selected biological armor systems - From structure-function to bio-mimetic techniques

机译:全面审查了选定的生物装甲系统-从结构功能到仿生技术

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This paper explores several lamellar structures found in nature, which have been shown to possess superior armor systems. In particular, the hard armor systems of nacre and conch shells, and the flexible armor system of fish scales are the focus of this review due to their high relevance to the protective structural engineering discipline. The structure-function relationships that govern the superior mechanical performance of these systems are attributed to their well-organized composite hierarchical structures. The paper also reviews advancements in additive manufacturing techniques for proof-of-concept prototyping, as well as advanced modeling techniques that have been employed to capture the complex geometries of biological structures and the interactions between their constituents. Finite element modeling and 3D printing were found to be the most popular techniques, as they automate the process of modeling and manufacturing complex bio-mimetic composites from a computer-aided design. Finally, attempts to apply bio-mimicry to the structural engineering discipline have been identified, which remains a new and exciting area of research.
机译:本文探讨了自然界中发现的几种层状结构,这些结构已显示出具有优越的装甲系统。尤其是珍珠质和海螺壳的硬质装甲系统以及鱼鳞的柔性装甲系统由于其与防护结构工程学科的高度相关性而成为本文的重点。控制这些系统卓越机械性能的结构-功能关系归因于其组织良好的复合层次结构。本文还回顾了用于概念验证原型的增材制造技术的进展,以及用于捕获生物结构的复杂几何形状及其组成部分之间相互作用的高级建模技术。有限元建模和3D打印被认为是最受欢迎的技术,因为它们可以通过计算机辅助设计自动化建模和制造复杂的仿生复合材料的过程。最后,已经确定了将仿生学应用于结构工程学科的尝试,这仍然是一个令人兴奋的新研究领域。

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