首页> 外文期刊>仿生工程学报(英文版) >Sea Urchin Spines as a Model-System for Permeable, Light-Weight Ceramics with Graceful Failure Behavior. Part I. Mechanical Behavior of Sea Urchin Spines under Compression
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Sea Urchin Spines as a Model-System for Permeable, Light-Weight Ceramics with Graceful Failure Behavior. Part I. Mechanical Behavior of Sea Urchin Spines under Compression

机译:Sea Urchin棘刺作为具有优美失效行为的可渗透,轻质陶瓷的模型系统。第一部分:受压海胆刺的力学行为

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摘要

The spines of pencil and lance urchins Heterocentrotus mammillatus and Phyllacanthus imperialis were studied as a model of light-weight material with high impact resistance. The complex and variable skeleton construction ("stereom") of body and spines of sea urchins consists of highly porous Mg-bearing calcium carbonate. This basically brittle material with pronounced single-crystal cleavage does not fracture by spontaneous catastrophic device failure but by graceful failure over the range of tens of millimeter of bulk compression instead. This was observed in bulk compression tests and blunt indentation experiments on regular, infiltrated and latex coated sea urchin spine segments. Microstructural characterization was carried out using X-ray computer tomography, optical and scanning electron microscopy. The behavior is interpreted to result from the hierarchic structure of sea urchin spines from the macroscale down to the nanoscale. Guidelines derived from this study see ceramics with layered porosity as a possible biomimetic construction for appropriate applications.
机译:研究了铅笔和长矛顽童Heterocentrotus mammillatus和Phyllacanthus imperialis的刺,将其作为具有高抗冲击性的轻质材料的模型。海胆的身体和刺的复杂而可变的骨架结构(“ stereom”)由高度多孔的含Mg的碳酸钙组成。这种具有明显的单晶分裂的基本脆性材料不会由于自发的灾难性设备故障而破裂,而是由于在数十毫米整体压缩范围内的平稳故障而破裂。在常规压缩,浸润和乳胶涂覆的海胆脊柱节段的整体压缩测试和钝齿压痕实验中观察到了这一点。使用X射线计算机断层扫描,光学和扫描电子显微镜对显微结构进行表征。行为被解释为是海胆刺的层级结构从宏观到纳米的结果。这项研究得出的指导方针认为,具有分层孔隙的陶瓷可能是合适应用的仿生构造。

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