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首页> 外文期刊>Journal of Biomechanics >A multiscale study on the structural and mechanical properties of the luffa sponge from Luffa cylindrica plant
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A multiscale study on the structural and mechanical properties of the luffa sponge from Luffa cylindrica plant

机译:Luffa cylindrica植物丝瓜海绵的结构和力学性能的多尺度研究

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Cellular materials that are often observed in biological systems exhibit excellent mechanical properties at remarkably low densities. Luffa sponge is one of such materials with a complex interconnecting porous structure. In this paper, we studied the relationship between its structural and mechanical properties at different levels of its hierarchical organization from a single fiber to a segment of whole sponge. The tensile mechanical behaviors of three single fibers were examined by an Instron testing machine and the ultrastructure of a fractured single fiber was observed in a scanning electronic microscope. Moreover, the compressive mechanical behaviors of the foam-like blocks from different locations of the sponge were examined. The difference of the compressive stress-strain responses of four sets of segmental samples were also compared. The result shows that the single fiber is a porous composite material mainly consisting of cellulose fibrils and lignin/hemicellulose matrix, and its Young's modulus and strength are comparable to wood. The mechanical behavior of the block samples from the hoop wall is superior to that from the core part. Furthermore, it shows that the influence of the inner surface on the mechanical property of the segmental sample is stronger than that of the core part; in particular, the former's Young's modulus, strength and strain energy absorbed are about 1.6 times higher. The present work can improve our understanding of the structure-function relationship of the natural material, which may inspire fabrication of new biomimetic foams with desirable mechanical efficiency for further applications in anti-crushing devices and super-light sandwich panels.
机译:在生物系统中经常观察到的细胞材料在极低的密度下表现出出色的机械性能。丝瓜海绵是具有复杂的互连多孔结构的此类材料之一。在本文中,我们研究了从单根纤维到整个海绵段的不同层次结构,其结构和力学性能之间的关系。用Instron试验机检查了三根单纤维的拉伸机械性能,并在扫描电子显微镜中观察了断裂的单纤维的超微结构。此外,检查了来自海绵不同位置的泡沫状块的压缩机械性能。还比较了四组分段样品的压应力-应变响应差异。结果表明,单纤维是一种主要由纤维素原纤维和木质素/半纤维素基质组成的多孔复合材料,其杨氏模量和强度与木材相当。来自箍壁的块状样品的机械性能优于来自核心部件的机械性能。此外,它表明内表面对分段样品的机械性能的影响要强于核心部分。特别是前者的杨氏模量,强度和吸收的应变能高约1.6倍。当前的工作可以增进我们对天然材料的结构-功能关系的理解,这可能会激发具有理想机械效率的新型仿生泡沫的制造,以进一步应用于防碎装置和超轻夹芯板上。

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