Title of article
Compliant hexagonal periodic lattice structures having both high shear strength and high shear strain
Author/Authors
Jaehyung Ju، نويسنده , , Joshua D. Summers، نويسنده ,
Issue Information
ماهنامه با شماره پیاپی سال 2011
Pages
13
From page
512
To page
524
Abstract
Cellular structures having negative Poisson’s ratios can be designed to have high shear flexure properties. In this paper, the elastic limits of hexagonal honeycombs including the ones having negative Poisson’s ratios (NPR) are explored with various cell geometries under simple shear loading. While designing a shear modulus, e.g., image of 10 MPa, of hexagonal honeycombs, corresponding meso-structures are designed with three constituent materials; an aluminum alloy (7075-T6), a titanium alloy (Ti–6Al–4V), and a high strength steel (ANSI 4340). The in-plane linear elastic honeycomb model is employed to achieve the shear moduli of the hexagonal honeycombs made of the three constituent materials. The shear strengths, (image)12 and shear yield strains, (image)12 of hexagonal honeycombs are obtained from finite element analysis using ABAQUS. The titanium alloy honeycombs show a good shear flexure property having both high (image)12 and (image)12 when it is designed to the target image. The re-entrant geometry makes honeycombs flexible associated with a high effective bending length.
Keywords
Honeycombs , Mechanical properties , Elastic behavior
Journal title
Materials and Design
Serial Year
2011
Journal title
Materials and Design
Record number
1069376
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