Structural Mechanics
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Product details:
- Edition number 1
- Publisher CRC Press
- Date of Publication 15 April 2026
- ISBN 9781032883274
- Binding Hardback
- No. of pages452 pages
- Size 234x156 mm
- Weight 453 g
- Language English
- Illustrations 12 Illustrations, black & white; 335 Illustrations, color; 12 Line drawings, black & white; 335 Line drawings, color; 6 Tables, black & white 700
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Short description:
Structural Mechanics provides an in-depth coverage of mechanics of structures with an approach that departs from the conventional strength of materials approach. It proceeds from the theory of elasticity to analyze the three-dimensional response to mechanical loads with a focus on slender structural elements.
MoreLong description:
Structural Mechanics provides an in-depth coverage of mechanics of structures with an approach that departs from the conventional strength of materials approach. It proceeds from the theory of elasticity to analyze the three-dimensional response to mechanical loads with a focus on slender structural elements: bars or beams, and assemblages thereof, known as trusses, frames, or ossatures.
Written with a rigorous perspective based on Saint-Venant’s theory, this book develops practical solutions to structures problems. It enables readers to classify structural members and identify the conditions under which a structural component can be idealized for the analysis of load-bearing capacity. This book covers the threedimensional theory of beams of any cross-sectional shape or form, including flexible rods, rings, tubes, multi-cell sections, and thin-walled structures.
This book is intended for upper-level undergraduate mechanical, aerospace, and civil engineering students taking courses in Structural Mechanics, Structural Analysis, and Mechanics of Aerospace Structures.
Instructors will be able to utilize a solutions manual and figure slides for their course.
MoreTable of Contents:
Part I. Elastic Solids. 1. Strain. 2. Stress. 3. Stress–Strain Relations. 4. The General Problem of Elastostatics. Part II. Beams. 5. Geometry and Statics of Beams. 6. Normal Force. 7. Bending Moment. 8. Torsion of Beams. 9. Shear Force. 10. Combined Loading. 11. Buckling. 12. Experimental Measurements.
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