High-Pressure Thermoelastic and Thermophysical Properties of Smart Materials
eBook - PDF

High-Pressure Thermoelastic and Thermophysical Properties of Smart Materials

EOSs at High Pressure and Thermal Properties

  1. 324 pages
  2. English
  3. PDF
  4. Available on iOS & Android
eBook - PDF

High-Pressure Thermoelastic and Thermophysical Properties of Smart Materials

EOSs at High Pressure and Thermal Properties

About this book

High-Pressure Thermoelastic and Thermophysical Properties of Smart Materials: EOSs at High Pressure and Thermal Properties describes how high-pressure research is instrumental in different sectors and how EOS plays an important role in high-pressure research; displays various EOS modelling techniques; explains thermoelastic and thermophysical properties of materials from EOSs, and provides a blueprint of size and shape dependence thermal properties of smart materials. This book opens with an introduction to high-pressure research, surveys experimental and theoretical tools for study at high pressure, covers the role of EOSs to describe thermoelastic properties and their limitations, looks at different modelling techniques of EOSs, considers how extreme-compression behaviour is different from low-compression behaviour, examines thermoelastic properties of smart materials at high pressure, addresses the search of universal EOSs, analyzes the effect of shape and size on thermal properties of smart materials and culminates in future research. This volume provides researchers and academicians working in the field of high-pressure research and shape / size dependent thermal properties a one-stop reference that summates correlations between different aspects of high-pressure thermoelastic and thermophysical properties of advanced materials. It serves as a thorough introduction for less-experienced readers, but also provides a summary of state-of-the-art in the field to physicists, materials scientists and engineers working to exploit high pressure techniques for possible materials development and application. - Covers the role of EOSs in high pressure physics and the modelling techniques - Highlights thermoelastic properties of some active smart materials and the gruneisen parameter and higher order gruneisen parameters at high pressure - Describes the shape size dependency of thermophysical properties and the infinite pressure range

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Information

Publisher
Elsevier
Year
2025
eBook ISBN
9780443328114

Table of contents

  1. Front Cover
  2. High-Pressure Thermoelastic and Thermophysical Properties of Smart Materials
  3. High-Pressure Thermoelastic and Thermophysical Properties of Smart Materials: Emerging Technologies and Materials in Thermal Engineering
  4. Copyright
  5. Contents
  6. Contributors
  7. Biography
  8. Tips for data-driven risk analysis
  9. 1 - Introduction to high-pressure research
  10. 2 - Searching of universal EOSs
  11. 3 - Applicability of different EOSs to evaluate the thermoelastic properties of bulk metallic glasses
  12. 4 - Thermoelastic and structural properties of high-temperature superconductors at high compressions
  13. 5 - Ionic liquids under high pressures: Fitting, predicting and using the speed of sound
  14. 6 - Pressure dependence of lattice vibrations and phonons
  15. 7 - Role of equation of states to describe thermoelastic properties and their limitations
  16. 8 - Thermoelastic properties of nanomaterials
  17. 9 - Thermodynamic properties and applications of smart materials
  18. 10 - Analysis of high pressure equation of state for gallium compounds
  19. 11 - Thermal conductivity of nanoliquids
  20. 12 - Prediction of high-pressure lattice parameter for rare earth compounds
  21. 13 - Concluding remarks
  22. Index
  23. Back Cover

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Yes, you can access High-Pressure Thermoelastic and Thermophysical Properties of Smart Materials by Anjani Kumar Pandey,Chandra Kumar Dixit,Shivam Srivastava in PDF and/or ePUB format, as well as other popular books in Technology & Engineering & Materials Science. We have over 1.5 million books available in our catalogue for you to explore.