Journal of Applied Physics · 2010 · 82 citations · 14 references
EngineeringMultiscale MechanicsMicromechanicsMechanical EngineeringComponent FibersSoft MatterMechanics ModelingStructural MaterialsElasticity (Physics)MechanicsMicrostructure-strength RelationshipMaterial NonlinearitiesMaterials ScienceMechanical BehaviorSolid MechanicsMaterial MechanicsNegative Poisson ’Helical Auxetic StructureMechanical PropertiesFiber StructureStructural MechanicsHelical Auxetic StructuresMechanics Of Materials
This paper discusses a helical auxetic structure which has a diverse range of practical applications. The mechanical properties of the system can be determined by particular combinations of geometry and component material properties; finite element analysis is used to investigate the static behavior of these structures under tension. Modeling criteria are determined and design issues are discussed. A description of the different strain-dependent mechanical phases is provided. It is shown that the stiffnesses of the component fibers and the initial helical wrap angle are critical design parameters, and that strain-dependent changes in cross-section must be taken into consideration: we observe that the structures exhibit nonlinear behavior due to nonzero component Poisson’s ratios. Negative Poisson’s ratios for the helical structures as low as −5 are shown. While we focus here on the structure as a yarn our findings are, in principle, scaleable.
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Foam Structures with a Negative Poisson's Ratio
Roderic S. Lakes · Science · 1987 · 3.6K citations
K. E. Evans, M. A. Nkansah, Ishion Hutchinson et al. · Nature · 1991 · 1.2K citations · Full text
Fabrication methods for auxetic foams
N. Chan, K. Evans · Journal of Materials Science · 1997 · 240 citations