Showing 50 publications by Zhong You
A new class of transformable kirigami metamaterials for reconfigurable electromagnetic systems
Yang Y, Vallecchi A, Shamonina E, Stevens CJ & You Z (2023), Scientific Reports, 13
BibTeX
@article{anewclassoftran-2023/1,
title={A new class of transformable kirigami metamaterials for reconfigurable electromagnetic systems},
author={Yang Y, Vallecchi A, Shamonina E, Stevens CJ & You Z},
journal={Scientific Reports},
volume={13},
number={1219},
publisher={Springer Nature},
year = "2023"
}
Kinematics of an origami inspired millipede robot
Liu C, You Z & Maiolino P (2022), Proceedings of the ASME 2022 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference. Volume 7: 46th Mechanisms and Robotics Conference (MR)
BibTeX
@inproceedings{kinematicsofano-2022/11,
title={Kinematics of an origami inspired millipede robot},
author={Liu C, You Z & Maiolino P},
booktitle={ASME 2022 International Design Engineering Technical Conferences and Computers and Information in Engineering Conference (IDETC-CIE 2022)},
year = "2022"
}
Collision-free deployments of compact stacks with spring-loaded hinges
Yang J, Chatzis E & You Z (2021), AIAA Scitech 2021 Forum
Earwig fan designing: biomimetic and evolutionary biology applications
Saito K, Perez-De-La Fuente R, Arimoto K, Seong YA, Aonuma H et al. (2020), Proceedings of the National Academy of Sciences of the United States of America, 117(30), 17622-17626
BibTeX
@article{earwigfandesign-2020/7,
title={Earwig fan designing: biomimetic and evolutionary biology applications},
author={Saito K, Perez-De-La Fuente R, Arimoto K, Seong YA, Aonuma H et al.},
journal={Proceedings of the National Academy of Sciences of the United States of America},
volume={117},
pages={17622-17626},
publisher={Proceedings of the National Academy of Sciences},
year = "2020"
}
Programmable stiffness and shape modulation in origami materials: emergence of a distant actuation feature
Mukhopadhyay T, Ma J, Feng H, Hou D, Gattas JM et al. (2020), Applied Materials Today, 19
BibTeX
@article{programmablesti-2020/3,
title={Programmable stiffness and shape modulation in origami materials: emergence of a distant actuation feature},
author={Mukhopadhyay T, Ma J, Feng H, Hou D, Gattas JM et al.},
journal={Applied Materials Today},
volume={19},
number={100537},
publisher={Elsevier},
year = "2020"
}
Unified parametric modeling of origami-based tube
Wang H, Zhao D, Jin Y, Wang M & You Z (2018), Thin-Walled Structures, 133, 226-234
Twist of tubular mechanical metamaterials based on waterbomb origami
Feng H, Ma J, Chen Y & You Z (2018), Scientific Reports, 8
External inversion of thin-walled corrugated tubes
Li Y & You Z (2018), International Journal of Mechanical Sciences, 144, 54-66
Rectangular sandwich plates with Miura-ori folded core under quasi-static loadings
Xiang XM, You Z & Lu G (2018), Composite Structures, 195, 359-374
Transformation of polyhedrons
Chen Y, Yang F & You Z (2018), International Journal of Solids and Structures, 138, 193-204
Geometry of transformable metamaterials inspired by modular origami
Yang Y & You Z (2018), Journal of Mechanisms and Robotics, 10(2), 021001
Elastica surface generation of curved-crease origami
Lee T-U, You Z & Gattas JM (2017), International Journal of Solids and Structures, 136-137, 13-27
Peak stress relief of cross folding origami
Ma J, Hou D, Chen Y & You Z (2017), Thin-Walled Structures, 123, 155-161
Large deformation of an arc-Miura structure under quasi-static load
Xiang XM, Lu G, Ruan D, You Z & Zolghadr M (2017), Composite Structures, 182, 209-222
Analysis of Cross Folding an Elastic Sheet
Hou D, Ma J, Chen Y & You Z (2017), v05bt08a039-v05bt08a039
Geometry of Modular Origami Metamaterials
Yang Y & You Z (2017), v05bt08a043-v05bt08a043
Origami mechanical metamaterials based on the Miura-derivative fold patterns
Zhou X, Zang S & You Z (2017), Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, 472(2191)
BibTeX
@article{origamimechanic-2017/7,
title={Origami mechanical metamaterials based on the Miura-derivative fold patterns},
author={Zhou X, Zang S & You Z},
journal={Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences},
volume={472},
number={20160361},
publisher={Royal Society},
year = "2017"
}
An extended family of rigidly foldable origami tubes
Chen Y, Lv W, Li J & You Z (2017), Journal of Mechanisms and Robotics, 9(2), 021002
Design of rigid-foldable doubly curved origami tessellations based on trapezoidal crease patterns.
Song K, Zhou X, Zang S, Wang H & You Z (2017), Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, 473(2200), 20170016
BibTeX
@article{designofrigidfo-2017/4,
title={Design of rigid-foldable doubly curved origami tessellations based on trapezoidal crease patterns.},
author={Song K, Zhou X, Zang S, Wang H & You Z},
journal={Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences},
volume={473},
pages={20170016},
publisher={Royal Society},
year = "2017"
}
Porcine In Vivo Validation of a Virtual Contrast Model: The Influence of Contrast Agent Properties and Vessel Flow Rates
Peach TW, Ventikos Y, Byrne J & You Z (2016), American Journal of Neuroradiology, 37(12), 2304-2309
BibTeX
@article{porcineinvivova-2016/12,
title={Porcine In Vivo Validation of a Virtual Contrast Model: The Influence of Contrast Agent Properties and Vessel Flow Rates},
author={Peach TW, Ventikos Y, Byrne J & You Z},
journal={American Journal of Neuroradiology},
volume={37},
pages={2304-2309},
publisher={American Society of Neuroradiology},
year = "2016"
}
Dynamic axial crushing of origami crash boxes
Zhou C, Wang B, Ma J & You Z (2016), International Journal of Mechanical Sciences, 118, 1-12
Geometrically Graded Origami Tubes
Xie R, Hou D, Ma J, Chen Y & You Z (2016), v05bt07a010-v05bt07a010
Rigidly Deployable Origami Tubes Based on Kite-Shape Pattern
Lv W, Ma J, Chen Y & You Z (2016), v05bt07a011-v05bt07a011
Structural Design and Forming Method of Single-Curved Surface Structure Based on Miura-Origami
Wang H, Guo C, Li Y, Liu Y, Wang M et al. (2016), v05bt07a003-v05bt07a003
BibTeX
@inproceedings{structuraldesig-2016/8,
title={Structural Design and Forming Method of Single-Curved Surface Structure Based on Miura-Origami},
author={Wang H, Guo C, Li Y, Liu Y, Wang M et al.},
booktitle={Volume 5B: 40th Mechanisms and Robotics Conference},
pages={v05bt07a003-v05bt07a003},
year = "2016"
}
Curved Crease Tube Structures as an Energy Absorbing Crash Box
Garrett D, You Z & Gattas JM (2016), v05bt07a017-v05bt07a017
Symmetric waterbomb origami.
Chen Y, Feng H, Ma J, Peng R & You ZHONG (2016), Proceedings. Mathematical, Physical, and Engineering Sciences(2190)
The origami crash box
Ma J & You Z (2016), 277-289
BibTeX
@inproceedings{theorigamicrash-2016/4,
title={The origami crash box},
author={Ma J & You Z},
pages={277-289},
year = "2016"
}
Quasi-static axial crushing of thin-walled tubes with a kite-shape rigid origami pattern: Numerical simulation
Ma J, Hou D, Chen Y & You Z (2016), Thin-Walled Structures, 100, 38-47
Foldcores made of thermoplastic materials: Experimental study and finite element analysis
Zang S, Zhou X, Wang H & You Z (2015), Thin-Walled Structures, 100, 170-179
Design and digital fabrication of folded sandwich structures
Gattas J & You Z (2015), Automation in Construction, 63, 79-87
A new flow diverter stent for direct treatment of intracranial aneurysm
Ma J, You Z, Peach T, Byrne J & al. E (2015), Journal of Biomechanics, 48(16), 4206-4213
Osthole confers neuroprotection against cortical stab wound injury and attenuates secondary brain injury.
Xia Y, Kong L, Yao Y, Jiao Y, Song J et al. (2015), Journal of neuroinflammation, 12, 155
Design of three-dimensional origami structures based on a vertex approach
Zhou X, Wang H & You Z (2015), Proceedings of the Royal Society A: Mathematical, Physical and Engineering Science, 471(2181)
BibTeX
@article{designofthreedi-2015/9,
title={Design of three-dimensional origami structures based on a vertex approach},
author={Zhou X, Wang H & You Z},
journal={Proceedings of the Royal Society A: Mathematical, Physical and Engineering Science},
volume={471},
number={20150407},
publisher={Royal Society},
year = "2015"
}
Quasi-static crushing of eggbox, cube, and modified cube foldcore sandwich structures
Fathers R, Gattas J & You Z (2015), International Journal of Mechanical Sciences, 101-102, 421-428
BibTeX
@article{quasistaticcrus-2015/8,
title={Quasi-static crushing of eggbox, cube, and modified cube foldcore sandwich structures},
author={Fathers R, Gattas J & You Z},
journal={International Journal of Mechanical Sciences},
volume={101-102},
pages={421-428},
publisher={Elsevier},
year = "2015"
}
Corrugated Tube Inversion for Energy Absorption
Li Y & You Z (2015), v003t01a003-v003t01a003
BibTeX
@inproceedings{corrugatedtubei-2015/8,
title={Corrugated Tube Inversion for Energy Absorption},
author={Li Y & You Z},
booktitle={Volume 3: 17th International Conference on Advanced Vehicle Technologies; 12th International Conference on Design Education; 8th Frontiers in Biomedical Devices},
pages={v003t01a003-v003t01a003},
year = "2015"
}
APPLIED ORIGAMI. Origami of thick panels.
Chen Y, Peng R & You Z (2015), Science (New York, N.Y.), 349(6246), 396-400
Energy absorption of pre-folded origami under low speed impact
Wang B, Zhou CH & You Z (2015), Baozha Yu Chongji/Explosion and Shock Waves, 35(4), 473-481
Theoretical analysis of superelastic SMA helical structures subjected to axial and torsional loads
Zhou X & You Z (2015), Smart Structures and Systems, 15(5), 1271-1291
Geometric assembly of rigid-foldable morphing sandwich structures
Gattas J & You Z (2015), Engineering Structures, 94, 149-159
Geometric design and mechanical properties of cylindrical foldcore sandwich structures
Zhou X, Zang S, Wang H & You Z (2015), Thin-Walled Structures, 89, 116-130
Multi-corrugated indented foldcore sandwich panel for energy absorption
Li Y & You Z (2015), Proceedings of the ASME Design Engineering Technical Conference, 5B-2015
Fabrication of polymer origami-based V-type folded core
Zhao D, Li Y, Wang M, Duan C & You Z (2015), Proceedings of the ASME Design Engineering Technical Conference, 5B-2015
Axial crushing of thin-walled tubes with kite-shape pattern
Hou D, Chen Y, Ma J & You Z (2015), Proceedings of the ASME Design Engineering Technical Conference, 5B-2015
Experimental study of manufacture and mechanical behavior of sandwich structure with composite foldcores
Jiang K, Cai K, Wang M, Zhao D & You Z (2015), Proceedings of the ASME Design Engineering Technical Conference, 5B-2015
Virtual testing of foldcores made of polyethylene terephthalate
Hao Y, Zang S, Wang H, You Z & Zhou X (2015), ICCM International Conferences on Composite Materials, 2015-July
BibTeX
@inproceedings{virtualtestingo-2015/1,
title={Virtual testing of foldcores made of polyethylene terephthalate},
author={Hao Y, Zang S, Wang H, You Z & Zhou X},
year = "2015"
}
Miura-Base rigid origami: parametrizations of curved-crease geometries
Gattas J & You Z (2014), Journal of Mechanical Design, 136(12)
The behaviour of curved-crease foldcores under low-velocity impact loads
Gattas JM & You Z (2014), INTERNATIONAL JOURNAL OF SOLIDS AND STRUCTURES, 53, 80-91
Folding structures out of flat materials
You Z (2014), Science, 345(6197), 623-624
Energy Absorption of Thin-Walled Beams with a Pre-Folded Origami Pattern
Yao J & You Z (2014), Applied Mechanics and Materials, 566, 569-574