Book chapter
Unified Mechanics of Metallic Structural Materials
Comprehensive Mechanics of Materials, Volume 1-4, pp V3-2-V3-30
01 Jan 2024
Abstract
Unified mechanics theory (UMT) unifies Newton׳s universal laws of motion and the second law of thermodynamics at the ab-initio level. As a result, governing differential equation of any structural system directly includes entropy generation in the system. The linearly independent thermodynamic state index axis (TSI) of the unified mechanics theory maps the entropy generation rate at a material point between zero and one, according to the thermodynamic fundamental equation of the material. Then, the thermodynamic lifespan of any closed system travels between zero and one along the TSI axis according to the second law of thermodynamics as formulated by Boltzmann. Because entropy generation is directly included in the differential equation of the structure, there is no need for empirical dissipation potential obtained by curve-fitting a function to dissipation/degradation test data. However, the thermodynamic fundamental equation of the material must be derived analytically based on fundamental principles of physics and chemistry. In this chapter, some recently developed models for metallic structural material’s fatigue, corrosion, and hydrogen embrittlement behavior as well as, the temperature and strain rate-dependent flow stress modeling are presented.
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Details
- Title
- Unified Mechanics of Metallic Structural Materials
- Creators
- Hsiao W. Lee - Drexel UniversityNoushad Bin Jamal - Indian Institute of Technology MadrasHamidreza Fakhri - McMahon & Mann Consulting Engineering and Geology, Buffalo, NY, United StatesRavi Ranade - University at Buffalo, State University of New YorkHalina Egner - Cracow University of TechnologyAdam Lipski - Bydgoszcz University of Science and TechnologyMichał Piotrowski - Bydgoszcz University of Science and TechnologyStanisław Mroziński - Bydgoszcz University of Science and TechnologyChebolu L. Rao - Indian Institute of Technology MadrasMilos B. Djukic - University of BelgradeCemal Basaran - University at Buffalo, State University of New York
- Publication Details
- Comprehensive Mechanics of Materials, Volume 1-4, pp V3-2-V3-30
- Resource Type
- Book chapter
- Language
- English
- Academic Unit
- Mechanical Engineering and Mechanics
- Scopus ID
- 2-s2.0-85206149726
- Other Identifier
- 991022202499504721