Yaraghi Nicholas A, Kisailus David
Materials Science and Engineering Program, University of California, Riverside, California 92521, USA; email:
Department of Chemical and Environmental Engineering, University of California, Riverside, California 92521, USA.
Annu Rev Phys Chem. 2018 Apr 20;69:23-57. doi: 10.1146/annurev-physchem-040215-112621. Epub 2017 Dec 13.
Nature assembles weak organic and inorganic constituents into sophisticated hierarchical structures, forming structural composites that demonstrate impressive combinations of strength and toughness. Two such composites are the nacre structure forming the inner layer of many mollusk shells, whose brick-and-mortar architecture has been the gold standard for biomimetic composites, and the cuticle forming the arthropod exoskeleton, whose helicoidal fiber-reinforced architecture has only recently attracted interest for structural biomimetics. In this review, we detail recent biomimetic efforts for the fabrication of strong and tough composite materials possessing the brick-and-mortar and helicoidal architectures. Techniques discussed for the fabrication of nacre- and cuticle-mimetic structures include freeze casting, layer-by-layer deposition, spray deposition, magnetically assisted slip casting, fiber-reinforced composite processing, additive manufacturing, and cholesteric self-assembly. Advantages and limitations to these processes are discussed, as well as the future outlook on the biomimetic landscape for structural composite materials.
大自然将脆弱的有机和无机成分组装成复杂的层次结构,形成具有令人印象深刻的强度和韧性组合的结构复合材料。两种这样的复合材料是构成许多软体动物贝壳内层的珍珠层结构,其砖石结构一直是仿生复合材料的黄金标准,以及构成节肢动物外骨骼的角质层,其螺旋纤维增强结构直到最近才引起结构仿生学的关注。在这篇综述中,我们详细介绍了最近为制造具有砖石和螺旋结构的强韧复合材料所做的仿生努力。讨论的用于制造仿珍珠层和仿角质层结构的技术包括冷冻铸造、逐层沉积、喷雾沉积、磁辅助滑铸、纤维增强复合材料加工、增材制造和胆甾相自组装。讨论了这些工艺的优点和局限性,以及结构复合材料仿生领域的未来展望。