Shulph Ink
Dynamic Behavior of Materials: Fundamentals, Material Models, and Microstructure Effects
Dynamic Behavior of Materials: Fundamentals, Material Models, and Microstructure Effects
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- More about Dynamic Behavior of Materials: Fundamentals, Material Models, and Microstructure Effects
The book Dynamic Behavior of Materials: Fundamentals, Material Models, and Microstructure Effects is a comprehensive resource that provides readers with the knowledge and tools necessary to determine best practice design, modeling, simulation, and application strategies for a variety of materials. It examines the relationships between material microstructure and mechanical properties, enabling the development of materials with improved performance and more effective design of parts and components for high-rate applications.
Format: Paperback / softback
Length: 620 pages
Publication date: 01 November 2023
Publisher: Elsevier - Health Sciences Division
Dynamic Behavior of Materials: Fundamentals, Material Models, and Microstructure Effects is a comprehensive guide that equips readers with the essential knowledge and tools to determine optimal design, modeling, simulation, and application strategies for a diverse range of materials. It delves into the fundamental principles that govern the influence of material structure and high strain rates on material properties and behavior. The book explores the intricate relationships between material microstructure and resulting mechanical characteristics, paving the way for the development of materials with enhanced performance and more efficient design of parts and components for high-rate applications.
The book is organized into several sections, each covering key aspects of dynamic material behavior. These sections include:
• Fundamentals of Dynamic Material Behavior: This section provides an overview of dynamic elasticity and wave propagation, dynamic plasticity of crystalline materials, ductile fracture, brittle fracture, adiabatic heating and strain localization, response to shock loading, and various material characterization methods such as the Hopkinson Bar Technique, the Taylor Impact Experiment, different shock loading experiments, recent advances in dynamic material behavior, the dynamic behaviors of nanocrystalline materials, bulk metallic glasses, additively manufactured materials, ceramics, concrete and concrete-reinforced materials, geomaterials, polymers, composites, and biomaterials.
• Material Models: This section discusses the development and application of material models to simulate the behavior of materials under various loading conditions. It covers finite element models, boundary element models, and continuum models, as well as their advantages and limitations. The section also explores the use of experimental data and numerical simulations to validate and improve material models.
• Microstructure Effects: This section examines the impact of material microstructure on its mechanical properties and behavior. It discusses the formation and evolution of microstructures, such as grain size, phase composition, and texture, and their influence on material strength, stiffness, ductility, and toughness. The section also explores the use of advanced microscopy techniques, such as electron microscopy and X-ray diffraction, to study microstructure and its effects on material properties.
By providing a comprehensive coverage of dynamic behavior of materials, this book serves as a valuable resource for researchers, engineers, and students in the fields of materials science, mechanical engineering, and aerospace engineering. It enables them to gain a deeper understanding of the underlying principles that govern the behavior of materials under extreme conditions and to apply this knowledge to develop innovative materials and technologies for a wide range of applications.
Dimension: 229 x 151 (mm)
ISBN-13: 9780323991537
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