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通过分形模型探究龙虾爪外骨骼的各向异性力学性能。

Exploring anisotropic mechanical properties of lobster claw exoskeleton through fractal models.

机构信息

School of Aeronautics, Chongqing Jiaotong University, Chongqing, 400074, China; The Green Aerotechnics Research Institute of Chongqing Jiaotong University, Chongqing, 401120, China.

School of Aeronautics, Chongqing Jiaotong University, Chongqing, 400074, China.

出版信息

J Mech Behav Biomed Mater. 2024 Nov;159:106699. doi: 10.1016/j.jmbbm.2024.106699. Epub 2024 Aug 19.

Abstract

The outstanding mechanical properties of lobster claw exoskeletons are intricately tied to their internal microstructure. Investigating this relationship can offer vital insights for designing high-performance additive manufacturing structures. Fractal theory, with its fractional dimensional perspective, suits the complexity of real-world phenomena. Our study examines fully hydrated lobster claw exoskeletons using a multifaceted approach: four-point bending tests, scanning electron microscopy observations, and fractal models. Test results reveal superior mechanical properties in longitudinal specimens. Scanning electron microscopy shows non-uniform fiber helical structures and porous elements in the exoskeleton. Fracture mechanisms involve both breaking fiber fragments perpendicular to the cross-section and tearing between these fragments. The observed crack propagation paths exhibit statistical self-similarity. Consequently, we develop fractal models for the crack propagation paths in longitudinal and transverse specimens, calculating crack extension forces. Using the box-counting method and its improved variant, we determine the fractal dimensions of specimen sections. The fractal dimension of longitudinal models exceeds that of transverse models, and calculated crack extension forces are higher in longitudinal models. These findings align well with experimental data, demonstrating fractal theory's efficacy in analyzing the lobster claw exoskeleton's anisotropic mechanical properties.

摘要

龙虾爪外骨骼卓越的机械性能与其内部微观结构密切相关。研究这种关系可以为设计高性能增材制造结构提供重要的见解。分形理论以其分数维的视角,适合研究真实世界现象的复杂性。我们的研究使用多方面的方法来研究完全水合的龙虾爪外骨骼:四点弯曲测试、扫描电子显微镜观察和分形模型。测试结果表明,纵向样本具有更好的机械性能。扫描电子显微镜显示外骨骼中的纤维螺旋结构和多孔元素不均匀。断裂机制涉及垂直于横截面的纤维碎片的断裂和这些碎片之间的撕裂。观察到的裂纹扩展路径呈现出统计自相似性。因此,我们为纵向和横向样本的裂纹扩展路径开发了分形模型,计算裂纹扩展力。使用盒子计数法及其改进变体,我们确定了样本截面的分形维数。纵向模型的分形维数大于横向模型的分形维数,并且在纵向模型中计算出的裂纹扩展力更高。这些发现与实验数据一致,表明分形理论在分析龙虾爪外骨骼各向异性机械性能方面的有效性。

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