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Structural Mechanics [Kõva köide]

(Texas A&M University, USA)
  • Formaat: Hardback, 422 pages, kõrgus x laius: 234x156 mm, kaal: 453 g, 6 Tables, black and white; 335 Line drawings, color; 12 Line drawings, black and white; 335 Illustrations, color; 12 Illustrations, black and white
  • Ilmumisaeg: 29-May-2026
  • Kirjastus: CRC Press
  • ISBN-10: 1032883278
  • ISBN-13: 9781032883274
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  • Formaat: Hardback, 422 pages, kõrgus x laius: 234x156 mm, kaal: 453 g, 6 Tables, black and white; 335 Line drawings, color; 12 Line drawings, black and white; 335 Illustrations, color; 12 Illustrations, black and white
  • Ilmumisaeg: 29-May-2026
  • Kirjastus: CRC Press
  • ISBN-10: 1032883278
  • ISBN-13: 9781032883274

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.



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, the 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 analysis of load bearing capacity. The book covers three-dimensional theory of beams of any cross-sectional shape or form, including flexible rods, rings, tubes, multi-cell sections, and thin-walled structures.

The 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.

Part I. Elastic Solids.
1. Strain.
2. Stress.
3. StressStrain
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.
Amine A. Benzerga is the General Dynamics Professor of Aerospace Engineering at Texas A&M University, USA, where he joined in 2004. He holds an engineering diploma from SUPAERO (Toulouse, 1995) and a Ph.D. in Materials Science and Engineering from Mines de Paris in 2000. Prior to joining Texas A&M, he was a Research Engineer at the National Research Laboratory of Gaz de France (now GRTgaz) on leave at Brown University (Providence, USA) where he later pursued his post-doctoral studies in Solid Mechanics. His research interests include the deformation and fracture of structural and functional materials. Dr. Benzerga was the recipient of a CAREER award from the U.S. National Science Foundation in 2008 and a Fulbright U.S. Scholar Award in 2022. He was the Edward Pete Aldridge Associate Professor of Aerospace Engineering at Texas A&M (20112014) and was elected as ASME Fellow in 2024. Until recently, he was the Director of the Center for intelligent Multifunctional Materials and Structures (CiMMS) and currently holds a joint appointment in the Department of Materials Science and Engineering at Texas A&M.