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Titlebook: Wave Dynamics, Mechanics and Physics of Microstructured Metamaterials; Theoretical and Expe Mezhlum A. Sumbatyan Book 2019 Springer Nature

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发表于 2025-3-21 19:59:19 | 显示全部楼层 |阅读模式
书目名称Wave Dynamics, Mechanics and Physics of Microstructured Metamaterials
副标题Theoretical and Expe
编辑Mezhlum A. Sumbatyan
视频video
概述Explores microstructured metamaterials with a special focus on wave dynamics, mechanics, and related physical properties.Examines the mechanical properties inherent to particular types of metamaterial
丛书名称Advanced Structured Materials
图书封面Titlebook: Wave Dynamics, Mechanics and Physics of Microstructured Metamaterials; Theoretical and Expe Mezhlum A. Sumbatyan Book 2019 Springer Nature
描述This book addresses theoretical and experimental methods for exploring microstructured metamaterials, with a special focus on wave dynamics, mechanics, and related physical properties. The authors use various mathematical and physical approaches to examine the mechanical properties inherent to particular types of metamaterials. These include: .• Boundary value problems in reduced strain gradient elasticity for composite fiber-reinforced metamaterials .• Self-organization of molecules in ferroelectric thin films .• Combined models for surface layers of nanostructures .• Computer simulation at the micro- and nanoscale .• Surface effects with anisotropic properties and imperfect temperature contacts .• Inhomogeneous anisotropic metamaterials with uncoupled and coupled surfaces or interfaces .• Special interface finite elements and other numerical and analytical methods for composite structures .
出版日期Book 2019
关键词boundary value problems; fiber reinforced metamaterials; ferroelectric thin films; surface metamaterial
版次1
doihttps://doi.org/10.1007/978-3-030-17470-5
isbn_softcover978-3-030-17472-9
isbn_ebook978-3-030-17470-5Series ISSN 1869-8433 Series E-ISSN 1869-8441
issn_series 1869-8433
copyrightSpringer Nature Switzerland AG 2019
The information of publication is updating

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,Numerical Investigation of Effective Moduli of Porous Elastic Material with Surface Stresses for Vant by membrane elements covering the pore surfaces and conformable with the finite element mesh of bulk elements. Numerical experiments carried out for pores of cubic and spherical shapes show the cumulative significant effect of pore geometry and scale factors on the effective elastic moduli.
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,Numerical Investigation of Effective Moduli of Porous Elastic Material with Surface Stresses for Vant by membrane elements covering the pore surfaces and conformable with the finite element mesh of bulk elements. Numerical experiments carried out for pores of cubic and spherical shapes show the cumulative significant effect of pore geometry and scale factors on the effective elastic moduli.
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Periodic Problem for a Plane Composed of Two-Layer Strips with a System of Longitudinal Internal InThe solutions of the obtained systems are constructed by the method of mechanical quadrature. A numerical calculation was carried out and the laws of change in the coefficients of concentration of destructive stresses at the end points of cracks and contact stresses were studied depending on the mechanical and geometric parameters of the problem.
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Simulation of the Surface Structure of Ferroelectric Thin Films,l model based on the fractal plurality of Julia is used. The developed method allows to determine the values of the model parameters for a number of coating samples of steel sheet obtained under different conditions of their formation. The fractal dimension of the objects obtained on the base of this model is determined.
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Diffraction of the High-Frequency Waves by Arrays of Obstacles in the Two-Dimensional Elastic Mediuhhoff physical diffraction theory. With the use of an asymptotic estimate of multiple diffraction integrals by the multidimensional stationary phase method we have written out explicitly the geometric-theory approximation for displacements in the multiply reflected and transformed waves.
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