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Science/Engineering Strength of Materials

Posted on 2010-03-15




Name:Science/Engineering Strength of Materials
ASIN/ISBN:B000XVRELO
Language:English
File size:19 Mb
Publisher: Mir
Pages: Pages 648
Publish Date: 1979
ISBN: B000XVRELO
File Size: 19 MB
Other Info: DJVU
   Science/Engineering Strength of Materials

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Strength of Materials

Chapter 1. Introduction.

Chapter 2. Stress and Strain in Tension and Compression Within the Elastic Limit. Selection of Cross-sectional Area.

Chapter 3. Experimental Study of Tension and Compression in Various Materials and the Basis of Selecting the Permissible Stresses.

Part II. Complicated Cases of Tension and Compression.

Chapter 4. Design of Statically Indeterminate Systems form Permissible Stresses.

Chapter 5. Account for Dead Weight in Tension and Compression. Design of Flexible Strings.

Chapter 6. Compound Stressed State. Stress and Strain.

Chapter 7. Strength of Materials in Compound Stress.

Part III. Shear and Torsion

Chapter 8. Torsion. Strength and Rigidity of Twisted Bars.

Chapter 9. Torsion. Strength and Rigidity of Twisted Bars.

Part IV. Beading. Strength of Beams.

Chapter 10. Internal Forces in Bending. Shearing-force and Bending-moment Diagrams.

Chapter 11. Determination of Normal Stresses in Bending and Strength of Beams.

Chapter 12. Determination of Moments f Inertia of Plane Figures.

Chapter 13. Shearing and Principal Stresses in Beams.

Chapter 14. Shear Centre. Composite Beams.

Part V. Deformation of Beams due to Bending.

Chapter 15. Analytical Method of Determining Deformations.

Chapter 16. Graph-analytic Method of Calculating Displacement in Bending.

Chapter 17. Non-uniform Beams.

Part VI. Potential Energy. Statically Indeterminate Beams.

Chapter 18. Application of the Concept of Potential Energy in Determining Displacements.

Chapter 19. Statically Indeterminate Beams.

Part VII. Resistance Under Compound Loading.

Chapter 20. Unsymmetric Bending.

Chapter 21. Combined Bending and Tension or Compression.

Chapter 22. Combined Bending and Torsion.

Chapter 23. General Compound Loading.

Chapter 24. Curved Bars.

Chapter 25. Thick-walled and Thin-walled Vessels.

Chapter 26. Design for Permissible Loads. Design for Limiting State.

Part VIII Stability of Elements of Structures.

Chapter 27. Stability of Bars Under Compression.

Chapter 28. More Complicated Questions of Stability in Elements of Structures.

Part IX. Dynamic Action of Forces.

Chapter 29. Effect of Forces of Inertia. Stresses due to Vibrations.

Chapter 30. Stresses Under Impact Loading.

Chapter 31. Strength Check of Materials Under Variable Loading.

Chapter 32. Fundamentals of Creep Analysis.

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