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Multiscale and multiphysics modellin...
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Euromech Colloquium (2024 :)
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Multiscale and multiphysics modelling for advanced and sustainable materials = Euromech Colloquium 642 /
紀錄類型:
書目-電子資源 : Monograph/item
正題名/作者:
Multiscale and multiphysics modelling for advanced and sustainable materials/ edited by Patrizia Trovalusci, Tomasz Sadowski, Adnan Ibrahimbegovic.
其他題名:
Euromech Colloquium 642 /
其他作者:
Trovalusci, Patrizia.
團體作者:
Euromech Colloquium
出版者:
Cham :Springer Nature Switzerland : : 2025.,
面頁冊數:
xix, 429 p. :ill. (some col.), digital ;24 cm.
內容註:
Multiscale and multiphysical aspects of materials modelling, Mathematical and computational foundations of multiscale approaches -- Material classes: structural, multi functional, nano/microstructured materials bioinspired and soft materials; Material properties: elasticity, fracture, damage, plasticity, thermo mechanics, viscosity -- Non standard/non local continuous formulations for materials with microstructure; Multi scale design and optimization; Multi objective homogenization based topology optimization -- Atomistic/Molecular models and applications to continuum mechanics problems; Statistical and mesoscale materials modelling; Hierarchical/Concurrent multiscale modelling approaches -- Additive manufacturing, architected materials and metamaterials -- Data driven material design and artificial intelligence -- Synergistic coupling of experiments with multiscale modelling.
Contained By:
Springer Nature eBook
標題:
Materials - Mathematical models -
電子資源:
https://doi.org/10.1007/978-3-031-84379-2
ISBN:
9783031843792
Multiscale and multiphysics modelling for advanced and sustainable materials = Euromech Colloquium 642 /
Multiscale and multiphysics modelling for advanced and sustainable materials
Euromech Colloquium 642 /[electronic resource] :edited by Patrizia Trovalusci, Tomasz Sadowski, Adnan Ibrahimbegovic. - Cham :Springer Nature Switzerland :2025. - xix, 429 p. :ill. (some col.), digital ;24 cm. - Advanced structured materials,v. 2311869-8441 ;. - Advanced structured materials ;v. 231..
Multiscale and multiphysical aspects of materials modelling, Mathematical and computational foundations of multiscale approaches -- Material classes: structural, multi functional, nano/microstructured materials bioinspired and soft materials; Material properties: elasticity, fracture, damage, plasticity, thermo mechanics, viscosity -- Non standard/non local continuous formulations for materials with microstructure; Multi scale design and optimization; Multi objective homogenization based topology optimization -- Atomistic/Molecular models and applications to continuum mechanics problems; Statistical and mesoscale materials modelling; Hierarchical/Concurrent multiscale modelling approaches -- Additive manufacturing, architected materials and metamaterials -- Data driven material design and artificial intelligence -- Synergistic coupling of experiments with multiscale modelling.
This book offers the proceedings of Euromech colloquium 642, which wanted to provide a forum to present and debate several advanced computational, experimental, and analytical methods for studying the behaviour of complex materials and structures. The goal was to gather researchers (engineers, physicists, and mathematicians) specialized in multiscale material modelling for simulating the mechanics of solids and the physics of matter with the final aim of bridging the gap between solids and structural mechanics and material science in the modelling of "complex" materials. Both computational and experimental aspects play a central role, and talks have also focused on a broad range of aspects either related to the material modelling or the structural one. Various types of complex materials, made of very different constituents, are used nowadays in engineering practice: particle or fibrous composites; laminates; green composites with natural fillers and industrial or urban recyclable materials; nanomaterials; architecture material; in general complex multiphase materials with a complex internal structure including: porosity, reinforcement in the form of short fibres and particles of various properties, shapes, and sizes, filled in different media. It is widely recognized that important macroscopic properties such as the macroscopic stiffness and strength are governed by multiphysics processes (e.g. damage due to heat transfer or fluid penetration, crack propagation under thermal shock in ceramic/metallic matrix composites, etc.) which occur at one to several scales below the level of observation. A thorough understanding of how these processes influence the reduction of stiffness and strength is a key to the analysis of existing, and the design of improved, complex materials. The colloquium was centred on "Multiscale and Multiphysics Modeling of Complex Materials", with attention to the constitutive aspects concerning complex materials, so defined for the presence of internal structure at different scales (nano/micro/meso) and nonlinear constitutive behaviour (plasticity, damage, fracture, etc.).
ISBN: 9783031843792
Standard No.: 10.1007/978-3-031-84379-2doiSubjects--Topical Terms:
650213
Materials
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LC Class. No.: TA404.23
Dewey Class. No.: 620.11
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