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Origami engineering
Origami traces its origins to an ancient art form transforming flat thin surfaces into various
complex, fabulous 3D objects. Nowadays, such transformation transcends art by offering a …
complex, fabulous 3D objects. Nowadays, such transformation transcends art by offering a …
Origami with rotational symmetry: a review on their mechanics and design
Origami has emerged as a powerful mechanism for designing functional foldable and
deployable structures. Among various origami patterns, a large class of origami exhibits …
deployable structures. Among various origami patterns, a large class of origami exhibits …
Design and bandgap optimization of multi-scale composite origami-inspired metamaterials
This paper seeks to present the design and bandgap optimization of multi-scale composite
origami-inspired metamaterials (MCOMs) reinforced with grapheme platelets (GPLs) and …
origami-inspired metamaterials (MCOMs) reinforced with grapheme platelets (GPLs) and …
Topologically tunable local-resonant origami metamaterials for wave transmission and impact mitigation
Origami metamaterials can control the propagation and energy transmission of elastic
waves via the flexible design of microstructure topology, which has great application …
waves via the flexible design of microstructure topology, which has great application …
A physics-informed neural network for Kresling origami structures
CX Liu, X Wang, W Liu, YF Yang, GL Yu… - International Journal of …, 2024 - Elsevier
Origami structures have the advantages of foldability and adjustability, with applications
spanning numerous engineering fields. However, there remains a dearth of intelligent and …
spanning numerous engineering fields. However, there remains a dearth of intelligent and …
Deployment kinematics of axisymmetric Miura origami: unit cells, tessellations, and stacked metamaterials
Origami is emerging as a promising paradigm for deployable structures. The theoretical
analysis on the relationship between geometry of the crease patterns and the induced …
analysis on the relationship between geometry of the crease patterns and the induced …
Carbon fiber reinforced composite 3D origami-inspired auxetic honeycomb with omni-directional high stiffness
Y Gao, Z Li, X Wei, Y Du, Z Zhou, J **ong - International Journal of Solids …, 2024 - Elsevier
Traditional 3D auxetic materials face significant limitations, marked by low stiffness and
pronounced anisotropy. To address these challenges, here a new kind of 3D origami …
pronounced anisotropy. To address these challenges, here a new kind of 3D origami …
Two plateau characteristics of re-entrant auxetic honeycomb along concave direction
Auxetic honeycombs usually feature a single plateau stress, which hinders their
multifunctional applications. In this work, we aim at investigating the two plateau …
multifunctional applications. In this work, we aim at investigating the two plateau …
Conical Kresling origami and its applications to curvature and energy programming
Kresling origami has recently been widely used to design mechanical metamaterials, soft
robots and smart devices, benefiting from its bistability and compression-twist coupling …
robots and smart devices, benefiting from its bistability and compression-twist coupling …
Design and optimization of the dual-functional lattice-origami metamaterials
This study proposes a multi-scale composite lattice-origami metamaterial (MCLOM) to
achieve excellent bandgap characteristics and energy absorption capacities. The MCLOMs …
achieve excellent bandgap characteristics and energy absorption capacities. The MCLOMs …