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骨からヒントを得たより強靭なコンクリート(Tougher concrete, inspired by bone)

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2024-09-16 プリンストン大学

プリンストン大学の研究者は、人間の骨の外層をヒントに、従来のコンクリートより5.6倍の耐損傷性を持つセメント材料を開発しました。この新素材は、管状の内部構造を持ち、亀裂の伝播を防ぎ、急激な破壊を回避します。従来の繊維やプラスチックの添加物を使わず、幾何学的なデザインによって材料の強度と靭性を向上させています。この設計は、特に建設材料において大きな応用の可能性を秘めています。

<関連情報>

強靭な皮質骨に触発された管状アーキテクトセメントベースの無秩序材料 Tough Cortical Bone-Inspired Tubular Architected Cement-Based Material with Disorder

Shashank Gupta, Reza Moini
Advanced Materials  Published: 10 September 2024
DOI:https://doi.org/10.1002/adma.202313904

骨からヒントを得たより強靭なコンクリート(Tougher concrete, inspired by bone)

Abstract

Cortical bone is a tough biological material composed of tube-like osteons embedded in the organic matrix surrounded by weak interfaces known as cement lines. The cement lines provide a microstructurally preferable crack path, hence triggering in-plane crack deflection around osteons due to cement line-crack interaction. Inspired by this toughening mechanism and facilitated by a hybrid (3D-printing/casting) process, the study engineers architected tubular cement-based materials with the stepwise cracking toughening mechanism, that enables a non-brittle fracture. Using experimental and theoretical approaches, the study demonstrates the competition between tube size and shape on stress intensity factor from which engineering stepwise cracking can emerge. Two competing mechanisms, both positively and negatively affected by the growing tube size, arise to significantly enhance the overall fracture toughness by up to 5.6-fold compared to the monolithic brittle counterpart without sacrificing the specific strength. This is enabled by crack-tube interaction and engineering the tube size, shape, and orientation, which promotes rising resistance-curves (R-curve). “Disorder” curves and statistical mechanics parameters are proposed for the first time to quantitatively characterize the degree of disorder for describing the representation of the architected arrangement of materials in lieu of otherwise inadequate “periodicity” classification and misperceived disorder parameters (perturbation and Voronoi tessellation methods).

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0902鋼構造及びコンクリート
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