By N.E. Shanmugam, C.M. Wang
Metal and different kinds of plated buildings are utilized in various functions from aircrafts to ships and offshore structures to bridges, energy crops and cranes. A key factor within the use of those constructions is their balance behaviour lower than compressive rigidity. research and layout of plated buildings studies the wealth of study during this vital sector and its implications for layout, protection and maintenance.
The ebook considers a few of the different types of buckling that plated buildings are inclined to come across. Chapters additionally assessment buckling in quite a number fabrics from metal to differing kinds of composite. The booklet additionally discusses the behaviour of different types of elements utilized in steel-plated buildings. those parts comprise metal beams and columns in addition to curved, stiffened, corrugated, laminated and different kinds of plate design.
With its exclusive editors and overseas workforce of individuals, research and layout of plated buildings is an invaluable regular reference for civil engineers curious about the layout of plated structures.
- Discusses the behaviour of metal and different plated constructions whilst less than stress
- Extensive assurance of the major study during this vital area
- Compiled through a world workforce of exotic contributors
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Additional resources for Analysis and Design of Plated Structures. Volume 1 Stability
J. (1977), The design against lateral stability of haunched members restrained at intervals along the tension flange. Proceedings of Second International Colloquium on Stability, Washington, DC, 618–629. , Shakir-Khalil, H. and Akhtar, S. (1979), Stability of tapered and haunched members. Proceedings, Institution of Civil Engineers, London, 67, Part 2, 677–694. Kitipornchai, S. S. (1972), Elastic stability of tapered I-beams. Journal of the Structural Division, ASCE, 98(ST3), 713–728. L. L. (1972), Design of tapered members.
Trans. ASME, Journal of Applied Mechanics, 40(1), 193–200. P. M. (1961), Theory of Elastic Stability. McGraw-Hill, New York. , Kitipornchai, S. M. (1994), Buckling solutions for Mindlin plates of various shapes. Engineering Structures, 16(2), 119–127. N. H. (2000), Shear Deformable Beams and Plates; Relationships with Classical Solution, Elsevier, Amsterdam. M. (1987), Curvature effects in the Buckling of symmetrically-laminated rectangular plates with transverse shear deformation. Composite Structures, 8(2), 85– 103.
Trans. ASME, Journal of Applied Mechanics, 42, 110– 114. E. (1960), Vibrations and stability of plates under initial stress. Proc. ASCE, Journal of Engineering Mechanics Division, 86, 65–94. H. W. (2001), Vibration and buckling of SS-F-SS-F rectangular plates loaded by in-plane moments. International Journal of Structural Stability and Dynamics, 1, 527–543. H. J. (2004), Exact solutions for the free vibrations of rectangular plates having in-plane moments acting on two opposite simply supported edges.
Analysis and Design of Plated Structures. Volume 1 Stability by N.E. Shanmugam, C.M. Wang