软体动物生物陶瓷外壳的多层级结构:力学与仿生学

Hierarchical structures of molluscan bioceramic shells: Mechanics and biomimetics

  • 摘要: 历经数百万年的自然演化,软体动物生物陶瓷外壳已形成高度有序的多层级结构,兼具高强度与高韧性,可有效抵御外界环境侵蚀及捕食者攻击,从而保护内部软体组织的结构完整性与生理功能稳定性。深入解析天然生物陶瓷外壳的力学行为与强韧化机制,能为高性能结构材料设计提供重要的理论基础与仿生启示。本文综述了以典型的贝壳珍珠母砖泥结构和海螺壳多层级交叉片层结构为代表的两类软体动物外壳在力学与仿生学方面的研究进展。首先讨论了两类软体动物外壳的多层级结构特征、力学性能及强韧化机制,其次梳理了其多尺度力学模型及仿生结构材料的研究进展,最后探讨了其力学与仿生学领域所面临的主要挑战及未来发展趋势。本文旨在为软体动物生物陶瓷外壳的力学与仿生学研究抛砖引玉,推动该领域从基础机理探索向工程化应用转化。

     

    Abstract: Over millions of years of natural evolution, molluscan bioceramic shells have developed highly ordered, hierarchical structures that simultaneously achieve exceptional strength and toughness. These structural features confer robust resistance to environmental erosion and predatory attacks, thereby preserving both the structural integrity and physiological homeostasis of the underlying soft tissues. A rigorous mechanistic understanding of the mechanical behaviors and underlying strengthening and toughening mechanisms in these natural bioceramics shells offers not only fundamental theoretical insights but also valuable biomimetic principles for the rational design of advanced structural materials. In this review, we provide a comprehensive overview of the development in the mechanics and biomimetics of two archetypal molluscan shells: the brick-and-mortar structure of nacreous shells and hierarchical crossed-lamellar structure of conch shells. First, we discuss the hierarchical structural features, mechanical properties, and associated strengthening and toughening mechanisms of two molluscan shells. Second, we synthesize progress in the development of multiscale mechanical models and biomimetic structural materials. Finally, we identify the main challenges and future trends in the mechanics and biomimetics of two molluscan shells. This review aims to stimulate further research on the mechanics and biomimetics of molluscan bioceramic shells, promoting the transition of this field from fundamental mechanism exploration to practical engineering applications.

     

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