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Cuttlebone: Characterisation, Application and Development of Biomimetic Materials

机译:骨骨:仿生材料的表征,应用和开发

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摘要

Cuttlebone signifies a special class of ultra-lightweight cellular natural material possessing unique chemical,mechanical and structural properties,which have drawn considerable attention in the literature.The aim of this paper is to better understand the mechanical and biological roles of cuttlebone.First,the existing literature concerning the characterisation and potential applications inspired by this remarkable biomaterial is critiqued.Second,the finite element-based homogenisation method is used to verify that morphological variations within individual cuttlebone samples have minimal impact on the effective mechanical properties.This finding agrees with existing literature,which suggests that cuttlebone strength is dictated by the cuttlefish habitation depth.Subsequently,this homogenisation approach is further developed to characterise the effective mechanical bulk modulus and biofluidic permeability that cuttlebone provides,thereby quantifying its mechanical and transporting functionalities to inspire bionic design of structures and materials for more extensive applications.Finally,a brief rationale for the need to design a biomimetic material inspired by the cuttlebone microstructure is provided,based on the preceding investigation.
机译:Cuttlebone表示一类特殊的超轻质蜂窝状天然材料,具有独特的化学,机械和结构特性,备受文献关注。本文的目的是更好地了解硬质合金的机械和生物学作用。第二,基于有限元的均质化方法被用来验证单个cut骨样品中的形态变化对有效机械性能的影响最小。这一发现与现有的观点相吻合。文献表明,乌贼的强度取决于乌贼的栖息深度。随后,这种均质方法得到进一步发展,以表征乌贼提供的有效机械体积模量和生物流体渗透性,从而量化其机械和运输功能。启发结构和材料的仿生设计以用于更广泛的应用。最后,在前面的研究的基础上,简要介绍了需要设计一种受tle骨微结构启发的仿生材料的理由。

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  • 来源
    《仿生工程学报(英文版)》 |2012年第3期|367-376|共10页
  • 作者单位

    School of Aerospace, Mechanical and Mechatronic Engineering, The University of Sydney, NSW 2006, Australia;

    Innovative Structures Group, School of Civil, Environmental and Chemical Engineering, RMIT University,GPO Box 2476, Melbourne 3001, Australia;

    School of Engineering and Physical Sciences, Heriot-Watt University, Edinburgh EH14 4AS, UK;

    School of Aerospace, Mechanical and Mechatronic Engineering, The University of Sydney, NSW 2006, Australia;

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