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Paperback. Condition: New. A partially-auxetic metamaterial is introduced, inspired by the Maltese cross. Each unit of this metamaterial consists of a pair of counter-rotating equal-armed crosses, which is interconnected to neighboring units via hinge rods and connecting rods. Based on linkage theory, the on-axes Poisson's ratio was established considering a two-fold symmetrical mechanism, while the (anti)tetrachiral mechanisms were identified for on-axes uniaxial compression. A shearing mechanism is suggested for pure shearing and diagonal loading of the metamaterial with square array. Results suggest that the approximated infinitesimal models are valid for the Poisson's ratio of the two-fold symmetrical and the (anti)tetrachiral mechanisms under on-axis tension and compression, respectively; however, the finite model is recommended for quantifying the Poisson's ratio under pure shear and off-axis loading. This metamaterial manifests microstructural trinity, in which three different loading modes result in three different groups of deformation mechanisms. Finally, suggestions are put forth for some unsolved predictive problems.
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ISBN 10: 1009246402 ISBN 13: 9781009246408
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Published by Cambridge University Press, 2022
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Couverture rigide. Condition: Comme neuf. Boca Raton (FL), CRC Press, Taylor and Francis Group, 2011, hardcover, about 9 ½ X 6 ½ inches, (xi) 321 pages, illustrated in B&W. Our copy is almost as new without any noticeable wear or flaw.
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Published by World Scientific Publishing Company, 2005
ISBN 10: 9812564543 ISBN 13: 9789812564542
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Published by Cambridge University Press, GB, 2022
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Paperback. Condition: New. A partially-auxetic metamaterial is introduced, inspired by the Maltese cross. Each unit of this metamaterial consists of a pair of counter-rotating equal-armed crosses, which is interconnected to neighboring units via hinge rods and connecting rods. Based on linkage theory, the on-axes Poisson's ratio was established considering a two-fold symmetrical mechanism, while the (anti)tetrachiral mechanisms were identified for on-axes uniaxial compression. A shearing mechanism is suggested for pure shearing and diagonal loading of the metamaterial with square array. Results suggest that the approximated infinitesimal models are valid for the Poisson's ratio of the two-fold symmetrical and the (anti)tetrachiral mechanisms under on-axis tension and compression, respectively; however, the finite model is recommended for quantifying the Poisson's ratio under pure shear and off-axis loading. This metamaterial manifests microstructural trinity, in which three different loading modes result in three different groups of deformation mechanisms. Finally, suggestions are put forth for some unsolved predictive problems.
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Published by World Scientific Publishing Company, 2005
ISBN 10: 9812564543 ISBN 13: 9789812564542
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Published by World Scientific Publishing Co Pte Ltd, SG, 2005
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Paperback. Condition: New. The research and development of nanofibers has gained much prominence in recent years due to the heightened awareness of its potential applications in the medical, engineering and defense fields. Among the most successful methods for producing nanofibers is the electrospinning process. In this timely book, the areas of electrospinning and nanofibers are covered for the first time in a single volume.The book can be broadly divided into two parts: the first comprises descriptions of the electrospinning process and modeling to obtain nanofibers while the second describes the characteristics and applications of nanofibers. The material is aimed at both newcomers and experienced researchers in the area.
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Published by World Scientific Publishing Company, 2005
ISBN 10: 9812564543 ISBN 13: 9789812564542
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Published by World Scientific Publishing Company, 2005
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Condition: New. U. Rajendra Acharya is a visiting faculty member at Ngee Ann Polytechnic in Singapore. His major research interests are in biomedical signal processing, bioimaging, data mining, visualization, and biophysics for better healthcare design,.