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Computational Structural Mechanics: Static and Dynamic Behaviors

Autor Snehashish Chakraverty, Karan Kumar Pradhan
en Limba Engleză Paperback – 13 sep 2018
Computational Structural Mechanics: Static and Dynamic Behaviorsprovides a cutting-edge treatment of functionally graded materials and the computational methods and solutions of FG static and vibration problems of plates. Using the Rayleigh-Ritz method, static and dynamic problems related to behavior of FG rectangular, Levy, elliptic, skew and annular plates are discussed in detail. A thorough review of the latest research results, computational methods and applications of FG technology make this an essential resource for researchers in academia and industry.


  • Explains application-oriented treatments of the functionally graded materials used in industry
  • Addresses relevant algorithms and key computational techniques
  • Provides numerical solutions of static and vibration problems associated with functionally graded beams and plates of different geometries
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Specificații

ISBN-13: 9780128154922
ISBN-10: 0128154926
Pagini: 336
Dimensiuni: 152 x 229 mm
Greutate: 0.45 kg
Editura: ELSEVIER SCIENCE

Public țintă

Researchers and postgraduate students in materials and mechanics of materials, and designers of thermal resistant technology for nuclear power generation, aerospace, automotive and structural engineering

Cuprins

1. Overview of functionally graded materials 2. Rayleigh-Ritz Method 3. DQ and GDQ Methods 4. Finite Element Method 5. Static analysis of FG beams 6. Vibration of FG beams 7. Static Analysis of FG Plates 8. Vibration of thick rectangular Plates 9. Vibration of FG skew plates 10. Vibration of FG Annular plates 11. Vibration of FG plates on elastic foundations


Descriere

Computational Structural Mechanics: Static and Dynamic Behaviors provides a cutting-edge treatment of functionally graded materials and the computational methods and solutions of FG static and vibration problems of plates. Using the Rayleigh-Ritz method, static and dynamic problems related to behavior of FG rectangular, Levy, elliptic, skew and annular plates are discussed in detail. A thorough review of the latest research results, computational methods and applications of FG technology make this an essential resource for researchers in academia and industry.

 

 

 

  • Explains application-oriented treatments of the functionally graded materials used in industry
  • Addresses relevant algorithms and key computational techniques
  • Provides numerical solutions of static and vibration problems associated with functionally graded beams and plates of different geometries