Please use this identifier to cite or link to this item: https://www.um.edu.mt/library/oar/handle/123456789/18568
Title: Elastic constants of 3-, 4- and 6-connected chiral and anti-chiral honeycombs subject to uniaxial in-plane loading
Authors: Alderson, Andrew
Alderson, Kim L.
Attard, Daphne
Evans, Kenneth E.
Gatt, Ruben
Grima, Joseph N.
Miller, William
Smith, Christopher W.
Zied, Khaled M.
Ravirala, Naveen
Keywords: Finite element method
Materials -- Mechanical properties
Deformations (Mechanics)
Materials -- Elastic properties
Honeycomb structures
Issue Date: 2010-07
Publisher: Elsevier
Citation: Alderson, A., Alderson, K. L., Attard, D., Evans, K. E., Gatt, R., Grima, J. N., ...Zied, K. (2010). Elastic constants of 3-, 4- and 6-connected chiral and anti-chiral honeycombs subject to uniaxial in-plane loading. Composites Science and Technology, 70(7), 1042-1048.
Abstract: Finite element models are developed for the in-plane linear elastic constants of a family of honeycombs comprising arrays of cylinders connected by ligaments. Honeycombs having cylinders with 3, 4 and 6 ligaments attached to them are considered, with two possible configurations explored for each of the 3- (trichiral and anti-trichiral) and 4- (tetrachiral and anti-tetrachiral) connected systems. Honeycombs for each configuration have been manufactured using rapid prototyping and subsequently characterised for mechanical properties through in-plane uniaxial loading to verify the models. An interesting consequence of the family of ‘chiral’ honeycombs presented here is the ability to produce negative Poisson’s ratio (auxetic) response. The deformation mechanisms responsible for auxetic functionality in such honeycombs are discussed.
URI: https://www.um.edu.mt/library/oar//handle/123456789/18568
Appears in Collections:Scholarly Works - FacSciChe
Scholarly Works - FacSciMet

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