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            Basic Modeling and Theory of Creep of Metallic Materials

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            Author(s)
            Sandström, Rolf
            Language
            English
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            Abstract
            This open access book features an in-depth exploration of the intricate creep behavior exhibited by metallic materials, with a specific focus on elucidating the underlying mechanical properties governing their response at elevated temperatures, particularly in the context of polycrystalline alloys. Traditional approaches to characterizing mechanical properties have historically relied upon empirical models replete with numerous adjustable parameters, painstakingly tuned to match experimental data. While these methods offer practical simplicity, they often yield outcomes that defy meaningful extrapolation and application to novel systems, invariably necessitating the recalibration of parameters afresh. In stark contrast, this book compiles a compendium of models sourced from the scientific literature, meticulously crafted through ab initio methodologies rooted in fundamental physical principles. Notably, these models stand apart by their conspicuous absence of adjustable parameters. This pioneering effort is envisioned as a groundbreaking initiative, marking the first of its kind in the field. The resulting models, bereft of arbitrary tuning, offer a level of predictability hitherto unattained. Notably, they provide a secure foundation for ascertaining operational mechanisms, contributing significantly to enhancing our understanding of material behavior in high-temperature environments. This open access book is a valuable resource for researchers and seasoned students engaged in the study of creep phenomena in metallic materials. Readers will find a comprehensive exposition of these novel, parameter-free models, facilitating a deeper comprehension of the intricate mechanics governing material deformation at elevated temperatures.
            URI
            https://doab-dev.siscern.org/handle/20.500.12854/185712
            Keywords
            Stress strain curves; Stationary creep; Dislocation model; Creep with low stress exponents; Solid solution hardening; Precipitation hardening; Modelling of subgrain formation; Grain boundary sliding; Brittle rupture; Ductile rupture; Hart's criterion; Cavitation
            DOI
            10.1007/978-3-031-49507-6
            ISBN
            9783031495076, 9783031495069
            Publisher
            Springer Nature
            Publisher website
            http://www.springernature.com/oabooks
            Publication date and place
            Cham, 2024
            Imprint
            Springer Nature Switzerland
            Series
            Springer Series in Materials Science,
            Classification
            Materials science
            Materials / States of matter
            Pages
            310
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            Credits


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              This project received funding from the European Union’s Horizon 2020 research and innovation programme under grant agreement No 871069.

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