| Precio lista ed. digital: | US$89.10 |
| Precio Kindle: | US$86.37 Ahorra US$2.73 (3%) |
| Vendido por: | Amazon.com Services LLC |
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Roark's Formulas for Stress and Strain 7th Edición, Edición Kindle
Now updated with 30% new material, Roark Formulas for Stress and Strain, Seventh Edition, is the ultimate resource for designers, engineers, and analysts who need to calculate loads and stress. This landmark reference from Warren Young and Richard Budynas provides you with equations and diagrams of structural properties in an easy-to-use, thumb-through format. Updated, with a user-friendly page layout, this new edition includes expanded coverage of joints, bearing and shear stress, experimental stress analysis, and stress concentrations, as well as material behavior coverage and stress and strain measurement. You’ll also find expanded tables and cases; improved notations and figures in the tables; consistent table and equation numbering; and verification of correction factors.
- ISBN-13978-0070725423
- Edición7a
- EditorialMcGraw Hill
- Fecha de publicación4 Octubre 2001
- IdiomaInglés
- Tamaño del archivo13016 KB
Tablets Kindle Fire
Aplicaciones de lectura gratuitas para Kindle
Opiniones de clientes
- 5 estrellas4 estrellas3 estrellas2 estrellas1 estrella5 estrellas70%18%6%3%2%70%
- 5 estrellas4 estrellas3 estrellas2 estrellas1 estrella4 estrellas70%18%6%3%2%18%
- 5 estrellas4 estrellas3 estrellas2 estrellas1 estrella3 estrellas70%18%6%3%2%6%
- 5 estrellas4 estrellas3 estrellas2 estrellas1 estrella2 estrellas70%18%6%3%2%3%
- 5 estrellas4 estrellas3 estrellas2 estrellas1 estrella1 estrella70%18%6%3%2%2%
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Opiniones principales
Opiniones destacadas de los Estados Unidos
Ha surgido un problema al filtrar las opiniones justo en este momento. Vuelva a intentarlo en otro momento.
Theory of Elastic Stability - Timoshenko
Design of Welded Structures - Blodgett
Design of Weldments - Blodgett
Mechanical Engineering Design - Shigley
Materials Selection in Mechanical Design - Ashby
Deformation and Fracture Mechanics of Engineering Materials - Hertzberg
Mechanical Behavior of Materials - Dowling
An Introduction to the Design and Behavior of Bolted Joints - Bickford
Harris Shock & Vibration Handbook - Piersol
Peterson's Stress Concentration Factors - Pilkey
New topics in chapters 18-21:
-Fatigue and fracture mechanics
-Stresses in fasteners and joints
-Composite materials
-Biomechanics
Topics covered in the previous 7TH edition (851 pgs):
Chapter 1 - Introduction
Chapter 2 - Stress and Strain: Important Relationships
Chapter 3 - The Behavior of Bodies Under Stress
Chapter 4 - Principles and Analytical Methods
Chapter 5 - Numerical Methods
Chapter 6 - Experimental Methods
Chapter 7 - Tension, Compression, Shear, and Combined Stress
Chapter 8 - Beams; Flexure of Straight Bars
Chapter 9 - Bending of Curved Beams
Chapter 10 - Torsion
Chapter 11 - Flat Plates
Chapter 12 - Columns and Other Compression Members
Chapter 13 - Shells of Revolution; Pressure Vessels; Pipes
Chapter 14 - Bodies in Contact Undergoing Direct Bearing and Shear Stress
Chapter 15 - Elastic Stability
Chapter 16 - Dynamic and Temperature Stresses
Chapter 17 - Stress Concentration Factors
versus the new 8th edition (1072 pgs):
Chapter 1. Introduction
Chapter 2. Stress and Strain: Important Relationships
Chapter 3. The Behavior of Bodies Under Stress
Chapter 4. Principles and Analytical Methods
Chapter 5. Numerical Methods
Chapter 6. Experimental Methods
Chapter 7. Tension, Compression, Shear, and Combined Stress
Chapter 8. Beams; Flexure of Straight Bars
Chapter 9. Curved Beams
Chapter 10. Torsion
Chapter 11. Flat Plates
Chapter 12. Columns and Other Compression Members
Chapter 13. Shells of Revolution; Pressure Vessels; Pipes
Chapter 14. Bodies under Direct Bearing and Shear Stress
Chapter 15. Elastic Stability
Chapter 16. Dynamic and Temperature Stresses
Chapter 17. Stress Concentration
Chapter 18. Fatigue and Fracture
Chapter 19. Stresses in Fasteners and Joints
Chapter 20. Composite Materials
Chapter 21. Solid Biomechanics
This book is still no excuse for laziness. Be sure to follow up any stress analysis with journal/texbook research which may provide vital experimental vs. theoretical analysis. There are still manufacturing imperfections and departure from ideal conditions to consider. The experienced analyst knows that a little research goes a long way to prevent a lot of regret.
Whatever you do, though, do not put too much confidence in its answers being all that precise. I'd more or less trust it will in most cases be accurate to within ±25% or so? It should be used for rough initial sizing only, and should really be verified with a more thorough analysis (like FEA), and/or by testing. But nothing can beat it for very rapidly coming up with a design that is in the right ballpark for an application.
Still, an absolute classic in machine design, and absolutely invaluable to a mechanical engineer.