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Titlebook: Recent Advances on the Mechanical Behaviour of Materials; Computational Modell Erick I. Saavedra Flores,Rodrigo Astroza,Raj Das Conference

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书目名称Recent Advances on the Mechanical Behaviour of Materials
副标题Computational Modell
编辑Erick I. Saavedra Flores,Rodrigo Astroza,Raj Das
视频video
概述Features the latest peer-reviewed contributions on the mechanical behavior of materials.Includes a broad mixture of recent theoretical, computational, and experimental research works.Devotes special a
丛书名称Lecture Notes in Civil Engineering
图书封面Titlebook: Recent Advances on the Mechanical Behaviour of Materials; Computational Modell Erick I. Saavedra Flores,Rodrigo Astroza,Raj Das Conference
描述.This book is a collection of papers presented at the 14th International Conference on the Mechanical Behavior of Materials (ICM-14) held in Santiago, Chile, July 12–14, 2023. The mechanical properties of materials play a critical role in industrial and economic development. Advances in this field present significant challenges for current researchers in both industry and academia. The topics covered include mechanics of materials at the nano- and macro-scale, including metals, composites, ceramics, computational mechanics, dynamics, material processing, optimization, and biomechanics. The scope of materials of interest includes both industrial materials and those under development or used in specific applications. Some specific subjects include general mechanical behavior and constitutive models, mathematical modeling of materials, nano- and micro-mechanics, plasticity, computational mechanics, computational materials design, optimization of structures and materials, multi-scale modeling, and various specific materials such as biomaterials, high-temperature materials, and composites..
出版日期Conference proceedings 2024
关键词Mathematical and Computational Modelling of Materials; Multi-Level and Mult-Scale Modelling of Materi
版次1
doihttps://doi.org/10.1007/978-3-031-53375-4
isbn_softcover978-3-031-53377-8
isbn_ebook978-3-031-53375-4Series ISSN 2366-2557 Series E-ISSN 2366-2565
issn_series 2366-2557
copyrightThe Editor(s) (if applicable) and The Author(s), under exclusive license to Springer Nature Switzerl
The information of publication is updating

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Heterogeneous Mechanical Metamaterials with Extreme Bulk-To-Shear Modulus Ratio: An Evolutionary Des Topologically and materially heterogeneous mechanical metamaterials promise novel capabilities, expanding the design space through growth in degrees of freedom. However, this leads to increased design complexity, as the space of possible solutions becomes a high-dimensional domain. We present a com
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Application of the Edinburgh Bonded Particle Model Through Computer Simulation of Concretee cohesive granular materials due to its capacity to represent, in case of concrete, the coarse aggregate as particles and the cementitious matrix as bond between elements. The Edinburgh Bonded Particle Model (EBPM) defines its operation through two different contact models, the theory of the Timosh
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Challenges of Compression Test Simulations of a Resin-Filled Auxetic Polylactic Acid Structureants. Characterized by a negative Poisson’s ratio, auxetic materials subjected to tension expand in the transverse direction of the load, while if subjected to compression, undergo shortening in the direction transverse to the load. This study presents the identification and analysis of a material f
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Mass Exchange and Advection Term in Bone Remodeling Process: Theory of Porous Mediae effects of mechanical loading on bone tissue. However, the progress is not much due to the complexity of the process. Although it is well accepted that bone is consisting of two phases, such as a solid and a fluid part, all experiments consider only the solid part for simplicity. Recent studies de
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Tailings as a Sustainable Resource in 3D Printed Concrete for the Mining Industry: A Literature Revi as a sustainable alternative to fine aggregate. AM offers benefits such as reduced waste, shorter construction times, and lower costs. By incorporating tailings in 3D printed concrete, environmental challenges associated with tailings disposal can be mitigated, while promoting resource efficiency.
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