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Konstantin Naumenko

    Modeling High Temperature Materials Behavior for Structural Analysis
    Modeling of Creep for Structural Analysis
    Modeling High Temperature Materials Behavior for Structural Analysis
    Ebene Flächentragwerke
    • Ebene Flächentragwerke

      Grundlagen der Modellierung und Berechnung von Scheiben und Platten

      • 600 Seiten
      • 21 Lesestunden

      Das Werk bietet eine umfassende Analyse eines spezifischen Themas und richtet sich an Leser, die tiefergehende Kenntnisse erwerben möchten. Es kombiniert fundierte Forschung mit praktischen Beispielen und veranschaulicht komplexe Konzepte auf verständliche Weise. Die klare Struktur und die anschaulichen Darstellungen machen es zu einem wertvollen Nachschlagewerk für Studierende und Fachleute gleichermaßen. Zudem werden aktuelle Entwicklungen und Trends in dem behandelten Bereich berücksichtigt, was dem Leser einen modernen und relevanten Zugang ermöglicht.

      Ebene Flächentragwerke
    • Modeling High Temperature Materials Behavior for Structural Analysis

      Part II. Solution Procedures and Structural Analysis Examples

      • 228 Seiten
      • 8 Lesestunden

      Focusing on practical computational simulation and analysis, this second part delves into creep modeling using constitutive equations for structural materials under multi-axial stress states. It builds on the foundational concepts established in the first part, applying these detailed equations to a variety of examples, providing essential insights for readers engaged in advanced engineering and materials science.

      Modeling High Temperature Materials Behavior for Structural Analysis
    • Focusing on the simulation and analysis of time-dependent stress and strain changes in engineering structures, this book explores creep mechanics in detail. It covers the formulation of constitutive equations for multi-axial stress states and applies structural mechanics models to various forms like beams and shells. Additionally, it reviews both classical and contemporary methods for modeling creep, aiming to enhance the existing solutions with sophisticated examples for structural analysis applications.

      Modeling of Creep for Structural Analysis
    • Modeling High Temperature Materials Behavior for Structural Analysis

      Part I: Continuum Mechanics Foundations and Constitutive Models

      • 388 Seiten
      • 14 Lesestunden

      Focusing on the inelastic behavior of materials and structures at elevated temperatures, this monograph explores various approaches to characterization. It begins with experimental observations and delves into fundamental aspects of inelastic phenomena, such as creep, plasticity, relaxation, low cycle fatigue, and thermal fatigue. The comprehensive discussion provides insights into how these behaviors manifest under high-temperature conditions.

      Modeling High Temperature Materials Behavior for Structural Analysis