journal article Mar 01, 2016

In-plane mechanics of a novel zero Poisson's ratio honeycomb core

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References
49
[1]
Gibson (1997)
[2]
Bitzer (1997)
[3]
Scarpa "On the transverse shear modulus of negative Poisson's ratio honeycomb structures" Fatigue Fract Eng Mater Struct (2000) 10.1046/j.1460-2695.2000.00278.x
[4]
Lim "Functionally graded beam for attaining Poisson-curving" J Mater Sci Lett (2002) 10.1023/a:1021688009461
[5]
Bezazi "A novel centresymmetric honeycomb composite structure" Compos Struct (2005) 10.1016/j.compstruct.2005.09.035
[6]
Grima "On the potential of connected stars as auxetic systems" Mol Simul (2005) 10.1080/08927020500401139
[7]
Sun "Morphing thickness in airfoils using pneumatic flexible tubes and Kirigami honeycomb" J Intell Mater Syst Struct (2015)
[8]
Properties of a chiral honeycomb with a poisson's ratio of — 1

D. Prall, R.S. Lakes

International Journal of Mechanical Sciences 1997 10.1016/s0020-7403(96)00025-2
[9]
Miller "Flatwise buckling optimization of hexachiral and tetrachiral honeycombs" Compos Sci Technol (2010) 10.1016/j.compscitech.2009.10.022
[10]
Lorato "The transverse elastic properties of chiral honeycombs" Compos Sci Technol (2010) 10.1016/j.compscitech.2009.07.008
[11]
Alderson "Elastic constants of 3-, 4- and 6-connected chiral and anti-chiral honeycombs subject to uniaxial in-plane loading" Compos Sci Technol (2010) 10.1016/j.compscitech.2009.07.009
[12]
Chen "Elasticity of anti-tetrachiral anisotropic lattices" Int J Solids Struct (2013) 10.1016/j.ijsolstr.2012.12.004
[13]
Molecular network design

K. E. Evans, M. A. NKANSAH, I. J. HUTCHINSON et al.

Nature 1991 10.1038/353124a0
[14]
Lim (2015)
[15]
Lira "The SILICOMB cellular structure: mechanical and dielectric properties" Phys Status Solidi B (2009) 10.1002/pssb.200982036
[16]
Lira "Transverse shear modulus of SILICOMB cellular structures" Compos Sci Technol (2011) 10.1016/j.compscitech.2011.04.008
[17]
Virk "SILICOMB PEEK Kirigami cellular structures: mechanical response and energy dissipation through zero and negative stiffness" Smart Mater Struct (2013) 10.1088/0964-1726/22/8/084014
[18]
Neville "Transverse stiffness and strength of Kirigami zero-ν PEEK honeycombs" Compos Struct (2014) 10.1016/j.compstruct.2014.04.001
[19]
Grima "Hexagonal honeycombs with zero Poisson's ratios and enhanced stiffness" Adv Eng Mater (2010) 10.1002/adem.201000140
[20]
Grima "Molecular networks with a near zero Poisson's ratio" Phys Status Solidi B (2011) 10.1002/pssb.201083979
[21]
Attard "Modelling of hexagonal honeycombs exhibiting zero Poisson's ratio" Phys Status Solidi B (2011) 10.1002/pssb.201083980
[22]
Olympio "Zero Poisson's ratio cellular honeycombs for Flex skins undergoing one-dimensional morphing" J Intell Mater Syst Struct (2009) 10.1177/1045389x09355664
[23]
Olympio "Zero-v cellular honeycomb flexible skins for one-dimensional Wing morphing" (2007)
[24]
Alderson "The in-plane linear elastic constants and out-of-plane bending of 3-coordinated ligament and cylinder-ligament honeycombs" Compos Sci Technol (2010) 10.1016/j.compscitech.2009.07.010
[25]
Evans "The design of doubly curved sandwich panels with honeycomb cores" Compos Struct (1991) 10.1016/0263-8223(91)90064-6
[26]
Foam Structures with a Negative Poisson's Ratio

Roderic Lakes

Science 1987 10.1126/science.235.4792.1038
[27]
Models for the elastic deformation of honeycombs

I.G. Masters, K.E. Evans

Composite Structures 1996 10.1016/s0263-8223(96)00054-2
[28]
Evans "Auxetic materials: the positive side of being negative" Eng Sci Educ J (2000) 10.1049/esej:20000402
[29]
Grima "Auxetic behaviour from connected different-sized squares and rectangles" Proc R Soc A Math Phys Eng Sci (2010) 10.1098/rspa.2010.0171
[30]
Kimizuka "Mechanism for negative Poisson ratios over the α–β transition of cristobalite, SiO 2: a molecular-dynamics study" Phys Rev Lett (2000) 10.1103/physrevlett.84.5548
[31]
Engelmayr "Accordion-like honeycombs for tissue engineering of cardiac anisotropy" Nat Mater (2008) 10.1038/nmat2316
[32]
Bubert "Design and fabrication of a passive 1D morphing aircraft skin" J Intell Mater Syst Struct (2010) 10.1177/1045389x10378777
[33]
Flexible Skins for Morphing Aircraft Using Cellular Honeycomb Cores

Kingnidé R. Olympio, Farhan Gandhi

Journal of Intelligent Material Systems and Struct... 2009 10.1177/1045389x09350331
[34]
Gong "Zero Poisson's ratio cellular structure for two-dimensional morphing applications" Compos Struct (2015) 10.1016/j.compstruct.2015.08.048
[35]
Barbarino "A review of morphing aircraft" J Intelligent Material Syst Struct (2011) 10.1177/1045389x11414084
[36]
Min "Aircraft morphing wing concepts with radical geometry change" IES J Part A Civ Struct Eng (2010) 10.1080/19373261003607972
[37]
Rodriguez "Morphing aircraft technology survey" (2007)
[38]
Gomez "Morphing unmanned aerial vehicles" Smart Mater Struct (2011) 10.1088/0964-1726/20/10/103001
[39]
Sobieszczyk "Effect of longitudinal stress on wave propagation in width-constrained elastic plates with arbitrary Poisson's ratio" Phys Status Solidi B (2015) 10.1002/pssb.201552256
[40]
Young (2002)
[41]
Odegard "Constitutive modeling of piezoelectric polymer composites" Acta Mater (2004) 10.1016/j.actamat.2004.07.037
[42]
Singer (2002)
[43]
Sun "Prediction of composite properties from a representative volume element" Compos Sci Technol (1996) 10.1016/0266-3538(95)00141-7
[44]
Lira "Transverse shear stiffness of thickness gradient honeycombs" Compos Sci Technol (2010) 10.1016/j.compscitech.2010.02.007
[45]
Anisotropic material properties of fused deposition modeling ABS

Sung‐Hoon Ahn, Michael Montero, Dan Odell et al.

Rapid Prototyping Journal 2002 10.1108/13552540210441166
[46]
Bellini "Mechanical characterization of parts fabricated using fused deposition modeling" Rapid Prototyp J (2003) 10.1108/13552540310489631
[47]
Shen (2006)
[48]
Salit "On the feasibility of introducing auxetic behavior into thin-walled structures" Acta Mater (2009) 10.1016/j.actamat.2008.08.064
[49]
Scarpa "Numerical and experimental uniaxial loading on in-plane auxetic honeycombs" J Strain Anal Eng Des (2000) 10.1243/0309324001514152
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References
Details
Published
Mar 01, 2016
Vol/Issue
89
Pages
67-76
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Funding
National Natural Science Foundation of China Award: 11225211
British Council
Chinese Scholarship Council
Cite This Article
Jian Huang, Xiaobo Gong, Qiuhua Zhang, et al. (2016). In-plane mechanics of a novel zero Poisson's ratio honeycomb core. Composites Part B: Engineering, 89, 67-76. https://doi.org/10.1016/j.compositesb.2015.11.032