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Structure, mechanics and material properties of claw cuticle from mole cricket Gryllotalpaorientalis

机译:mole mole爪表皮的结构,力学和材料性能

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摘要

Powerful shovel-like forelimbs with special shape, structure and biological materials enable mole cricket to digging efficiently. During digging, the tip of the claw needs to wedge into the soil, and the base needs to withstand considerable anti-shear force. In this study, we analysed the structural characteristics, material composition and mechanical properties of the claw teeth using scanning electron microscopy, plasma atomic emission spectroscopy, nanoindentation and finite element analysis. The results show that the tips of claw teeth have a dense and homogeneous structure and a higher hardness and contents of Mn and Zn compared with the base. The structure of the base of claw teeth has an obvious laminar structure and higher fracture resistance. Moreover, it is speculated from the simulation results that basal position of the claw teeth is tough enough to withstand high stress, and the presence of the ribs effectively improves the mechanical stability and load-bearing capacity of the teeth during excavation. The results of this study can provide inspiration for the design of efficient mechanical components and agricultural implements.
机译:强大的铲状前肢具有特殊的形状,结构和生物材料,可以使mole得以有效挖掘。在挖掘过程中,爪尖需要楔入土壤中,而基座则需要承受相当大的抗剪力。在这项研究中,我们使用扫描电子显微镜,等离子原子发射光谱,纳米压痕和有限元分析来分析爪齿的结构特征,材料成分和力学性能。结果表明,与基体相比,爪齿齿尖具有致密均匀的结构,并且硬度和锰,锌含量更高。爪齿基部的结构具有明显的层状结构和较高的抗断裂性。此外,从模拟结果推测,爪齿的基部位置足够坚硬以承受高应力,并且肋的存在有效地改善了挖掘过程中齿的机械稳定性和承载能力。这项研究的结果可以为高效机械部件和农具的设计提供灵感。

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