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E-grāmata: Introduction to Aircraft Structural Analysis

4.36/5 (22 ratings by Goodreads)
(Professor Emeritus, Department of Civil Engineering, Leeds University, UK (deceased))
  • Formāts: PDF+DRM
  • Izdošanas datums: 14-Jun-2017
  • Izdevniecība: Butterworth-Heinemann Ltd
  • Valoda: eng
  • ISBN-13: 9780081021002
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  • Formāts: PDF+DRM
  • Izdošanas datums: 14-Jun-2017
  • Izdevniecība: Butterworth-Heinemann Ltd
  • Valoda: eng
  • ISBN-13: 9780081021002
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Based on the author's best-selling text, Aircraft Structures for Engineering Students, this brief book covers the basics of structural analysis as applied to aircraft structures. Coverage of elasticity, energy methods and virtual work set the stage for discussions of airworthiness/airframe loads and stress analysis of aircraft components. Numerous worked examples, illustrations, and sample problems show how to apply the concepts to realistic situations. Self-contained, this value-priced book is an excellent resource for anyone learning the subject.

  • Based on the author's best-selling text Aircraft Structures for Engineering Students, this introduction covers core concepts in about 160 fewer pages than the original by removing some optional topics like structural vibrations, structural and loading discontinuities, and aeroelasticity
  • Expanded coverage of composite materials and structures
  • New practical and design-based examples and problems throughout the text aid understanding and relate concepts to real world applications
  • Available online teaching and learning tools include downloadable Matlab code, solutions manual, and image bank of figures from the book

Papildus informācija

An essential resource for learning aircraft structural analysis that covers elasticity, energy methods and virtual work

1. Basic elasticity
2. Two-dimensional problems in elasticity
3. Torsion of solid sections
4. Virtual work and energy methods
5. Energy methods
6. Matrix methods
7. Bending of thin plates
8. Columns
9. Thin plates
10. Materials
11. Structural components of aircraft
12. Airworthiness
13. Airframe loads
14. Fatigue
15. Bending of open and closed thin-walled beams
16. Shear of beams
17. Torsion of beams
18. Combined open and closed section beams
19. Structural idealization
20. Wing spars and box beams
21. Fuselages
22. Wings
23. Fuselage frames and wing ribs
24. Laminated composite structures

T.H.G. Megson was a professor emeritus with the Department of Civil Engineering at Leeds University (UK). For Elsevier he wrote the market leading Butterworth Heinemann textbooks Aircraft Structures for Engineering Students and Introduction to Aircraft Structural Analysis (a briefer derivative of the aircraft structures book), as well as the text/ref hybrid Structural and Stress Analysis.