折り紙構造から新素材を発見(Unlocking a New Class of Material ― With Origami)

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2025-04-28 ジョージア工科大学

ジョージア工科大学の研究チームは、折り紙構造を応用した新しい変形可能なメタマテリアルを開発しました。この材料は、固体の強度を保ちつつ、力を加えると予測可能に変形します。研究では、台形を基にした折り紙構造の変形特性を解析し、設計の自由度と精度を向上させる理論モデルを提示。軽量で高い荷重支持力を持ち、航空機、建築、医療器具、包装分野などでの応用が期待されます。研究はNature Communications誌に掲載され、複数の大学と共同で実施されました。

<関連情報>

台形をベースとした折り紙メタマテリアルの等尺性を評価するための粗視化基本形状 Coarse-grained fundamental forms for characterizing isometries of trapezoid-based origami metamaterials

James P. McInerney,Diego Misseroni,D. Zeb Rocklin,Glaucio H. Paulino & Xiaoming Mao
Nature Communications  Published:20 February 2025
DOI:https://doi.org/10.1038/s41467-025-57089-x

折り紙構造から新素材を発見(Unlocking a New Class of Material ― With Origami)

Abstract

Investigations of origami tessellations as effective media reveal the ability to program the components of their elasticity tensor, and thus control the mechanical behavior of thin sheets. However, existing efforts focus on crease patterns that are composed of parallelogram faces where the parallel lines constrain the quasi-static elastic response. In this work, crease patterns composed of more general trapezoid faces are considered and their low-energy linear response is explored. Deformations of such origami tessellations are modeled as linear isometries that do not stretch individual panels at the small scale yet map to non-isometric changes of coarse-grained fundamental forms that quantify how the effective medium strains and curves at the large scale. Two distinct mode shapes, a rigid breathing mode and a nonrigid shearing mode, are identified in the continuum model. A specific example, which we refer to as Arc-Morph origami, is presented with analytical expressions for its deformations in both the discrete and continuous models. A developable specimen is fabricated and tested to validate the analytical predictions. This work advances the continuum modeling of origami tessellations as effective media with the incorporation of more generic faces and ground states, thereby enabling the investigation of novel designs and applications.

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