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Titlebook: Handbook of Mechanics of Materials; Chun-Hway Hsueh (Editor-in-Chief),Siegfried Schmau Reference work 2019 Springer Nature Singapore Pte L

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書(shū)目名稱Handbook of Mechanics of Materials
編輯Chun-Hway Hsueh (Editor-in-Chief),Siegfried Schmau
視頻videohttp://file.papertrans.cn/422/421634/421634.mp4
概述Comprehensive theory and tools for characterization of mechanical properties of materials.Covers a wide range of materials, from metals over composits to nanomaterials.Contributions from an internatio
圖書(shū)封面Titlebook: Handbook of Mechanics of Materials;  Chun-Hway Hsueh (Editor-in-Chief),Siegfried Schmau Reference work 2019 Springer Nature Singapore Pte L
描述This book provides a comprehensive reference for the studies of mechanical properties of materials over multiple length and time scales. The topics include nanomechanics, micromechanics, continuum mechanics, mechanical property measurements, and materials design. The handbook employs a consistent and systematic approach offering readers a user friendly reference ideal for frequent consultation. It?is appropriate for an audience at of graduate students, faculties, researchers, and professionals in the fields of Materials Science, Mechanical Engineering, Civil Engineering, Engineering Mechanics, and Aerospace Engineering.
出版日期Reference work 2019
關(guān)鍵詞Continuum Mechanics; Materials design; Mechanical Property measurement; Micromechanics; Nanomechanics; Me
版次1
doihttps://doi.org/10.1007/978-981-10-6884-3
isbn_ebook978-981-10-6884-3
copyrightSpringer Nature Singapore Pte Ltd. 2019
The information of publication is updating

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Fracture Nanomechanicsture behavior of interface and the environmental effect, (6) novel resonant vibration based high-cycle fatigue method and the fatigue properties of nano-metals, and (7) evaluation of deformation and fracture properties of nanoscale single crystalline materials. From the obtained results, authors poi
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In Situ Transmission Electron Microscopy Investigation of Dislocation Interactionster: the ability to capture dislocation interactions at sufficient spatial and temporal resolution to resolve complex interactions, and the ability to resolve salient features of the dislocation interactions using diffraction contrast imaging. This second advantage is used to characterize structural
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Multiscale Modeling of Radiation Hardeningbased predictions of the mechanical behavior became a realistic objective. Efforts were made to couple simulation results at different scales through the development of scale transition methods and the construction of constitutive equations of the local mechanical behavior. The objective of this cha
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Atomistic Simulations of Hydrogen Effects on Lattice Defects in Alpha Ironfected lattice defects are reviewed. Finally, the current state of knowledge of hydrogen effects on lattice defects and future directions are discussed. Alpha iron is considered because it is a basic steel component, and steel is a potential material for hydrogen storage and transport systems from e
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Modeling Dislocation in Binary Magnesium-Based Alloys Using Atomistic Methodot prevent atomistic calculations in the framework of semi-empirical potentials to validate/disprove/enrich an existing theoretical model or even to provide insights for the development of a new theoretical model. The validity of the data derived from atomistic calculations in the framework of semi-
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