Molecular network design
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This article is published in Nature.The article was published on 1991-09-12 and is currently open access. It has received 943 citations till now. The article focuses on the topics: Network architecture & Network planning and design.read more
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Can nanotubes display auxetic behaviour
TL;DR: In this article, a parametric study was performed to explore under what circumstances SWNTs may exhibit auxetic (negative Poisson's ratio) response to an applied axial load.
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Auxetics at the Molecular Level: A Negative Poisson's Ratio in Molecular Rods
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Partial auxeticity induced by nanoslits in the Yukawa crystal
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In-plane mechanical behavior of novel auxetic hybrid metamaterials
TL;DR: In this paper, two novel concepts of hybrid metamaterials that combine a core unit cell of re-entrant or cross-chiral shape and lateral missing ribs are presented.
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Stress–strain behavior in main chain liquid crystalline elastomers: effect of crosslinking density and transverse rod incorporation on “Poisson's ratio”
TL;DR: Stress-strain results for two series of smectic C main chain liquid crystalline elastomers (MCLCEs) are reported in this paper, where the structural variable in one series is crosslink density; in the other, transverse rod content.
References
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Book
Theory of elasticity
TL;DR: The theory of the slipline field is used in this article to solve the problem of stable and non-stressed problems in plane strains in a plane-strain scenario.
Book
Cellular Solids: Structure and Properties
Lorna J. Gibson,Michael F. Ashby +1 more
TL;DR: The linear elasticity of anisotropic cellular solids is studied in this article. But the authors focus on the design of sandwich panels with foam cores and do not consider the properties of the materials.
Book
Theory of elasticity
TL;DR: The equilibrium of rods and plates Elastic waves Dislocations Thermal conduction and viscosity in solids Mechanics of liquid crystals Index as discussed by the authors The equilibrium of rod and plate elastic waves Elastic waves
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Foam structures with a negative poisson's ratio
TL;DR: A novel foam structure is presented, which exhibits a negative Poisson's ratio, and such a material expands laterally when stretched, in contrast to ordinary materials.
Related Papers (5)
Negative Poisson's ratios as a common feature of cubic metals
Auxetic Materials : Functional Materials and Structures from Lateral Thinking!
Kenneth E. Evans,Andrew Alderson +1 more