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Mechanical Metamaterials: Folding at the Microscale: Enabling Multifunctional 3D Origami‐Architected Metamaterials (Small 35/2020)
Small ( IF 13.0 ) Pub Date : 2020-09-03 , DOI: 10.1002/smll.202070192
Zhaowen Lin 1 , Larissa S. Novelino 2 , Heming Wei 1 , Nicolas A. Alderete 1 , Glaucio H. Paulino 2 , Horacio D. Espinosa 1 , Sridhar Krishnaswamy 1
Affiliation  

Origami foldability, naturally realizable at the micro‐ and nanoscale, provides a pathway to enlarge the design space of mechanical metamaterials. In article number 2002229, Glaucio H. Paulino, Horacio D. Espinosa, Sridhar Krishnaswamy, and co‐workers design and fabricate microscale 3D multifunctional origami‐architected metamaterials and reveal their unique mechanical properties. Such metamaterials promise to influence various applications ranging from deployable medical devices to soft robotics in which size scalability, shape‐morphability, and deployability coupled with directional mechanical property tunability are requisite attributes.
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中文翻译:

机械超材料:微观折叠:启用多功能3D折纸架构超材料(小型35/2020)

折纸可折叠性可以在微米和纳米级自然实现,为扩大机械超材料的设计空间提供了途径。在2002229号文章中,Glaucio H. Paulino,Horacio D. Espinosa,Sridhar Krishnaswamy和同事们设计并制造了微型3D多功能折纸架构超材料,并揭示了其独特的机械性能。这种超材料有望影响各种应用,从可部署的医疗设备到软机器人,其中尺寸可扩展性,形状变形性和可部署性以及方向性机械性能可调性是必不可少的属性。
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更新日期:2020-09-03
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