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Titlebook: Developments and Novel Approaches in Nonlinear Solid Body Mechanics; Bilen Emek Abali,Ivan Giorgio Book 2020 Springer Nature Switzerland A

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書目名稱Developments and Novel Approaches in Nonlinear Solid Body Mechanics
編輯Bilen Emek Abali,Ivan Giorgio
視頻videohttp://file.papertrans.cn/271/270136/270136.mp4
概述Presents cutting-edge methods for novel models in nonlinear solid mechanics.Focuses on the design of metamaterials.Gathers selected manuscripts from ICoNSoM 2019
叢書名稱Advanced Structured Materials
圖書封面Titlebook: Developments and Novel Approaches in Nonlinear Solid Body Mechanics;  Bilen Emek Abali,Ivan Giorgio Book 2020 Springer Nature Switzerland A
描述.This book features selected manuscripts presented at ICoNSoM 2019, exploring cutting-edge methods for developing novel models in nonlinear solid mechanics. Innovative methods like additive manufacturing—for example, 3D printing— and miniaturization mean that engineers need more accurate techniques for modeling solid body mechanics. The book focuses on the formulation of continuum and discrete models for complex materials and systems, particularly the design of metamaterials.?.
出版日期Book 2020
關(guān)鍵詞Continuum mechanics; modeling solid body mechanics; Homogenization; Metamaterials; Elasticity; IcONSOM; co
版次1
doihttps://doi.org/10.1007/978-3-030-50460-1
isbn_softcover978-3-030-50462-5
isbn_ebook978-3-030-50460-1Series ISSN 1869-8433 Series E-ISSN 1869-8441
issn_series 1869-8433
copyrightSpringer Nature Switzerland AG 2020
The information of publication is updating

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Nonlinear Phenomena in Granular Solids: Modeling and Experimentsther researchers in the field of nonlinear Solid Mechanics in a stimulating research environment. This work is a rational report of activities of one of the several mini-symposia held during the conference titled “Nonlinear Phenomena in Granular Solids: Modeling and Experiments”. The main aim is to
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Characterization of Polystyrene Under Shear Deformation Using Molecular Dynamicsion of these composite materials at the molecular level, however, is either prohibitively expensive or just impossible. Multiscale approaches offer an elegant way to analyze such nanocomposites by significantly reducing computational costs compared to fully molecular simulations. When coupling diffe
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