Vinson | The Behavior of Shells Composed of Isotropic and Composite Materials | Buch | 978-90-481-4237-8 | sack.de

Buch, Englisch, 554 Seiten, Previously published in hardcover, Format (B × H): 155 mm x 235 mm, Gewicht: 861 g

Reihe: Solid Mechanics and Its Applications

Vinson

The Behavior of Shells Composed of Isotropic and Composite Materials


1. Auflage. Softcover version of original hardcover Auflage 1993
ISBN: 978-90-481-4237-8
Verlag: Springer Netherlands

Buch, Englisch, 554 Seiten, Previously published in hardcover, Format (B × H): 155 mm x 235 mm, Gewicht: 861 g

Reihe: Solid Mechanics and Its Applications

ISBN: 978-90-481-4237-8
Verlag: Springer Netherlands


Shell structures are used in all phases of structures, from space vehicles to deep submergence hulls, from nuclear reactors to domes on sport arenas and civic buildings. With new materials and manufacturing methods, curved thin walled structures are being used increasingly.
This text is a graduate course in the theory of shells. It covers shells of isotropic materials, such as metal alloys and plastics, and shells of composite materials, such as fibre reinforced polymer, metal or ceramic matrix materials. It provides the essential information for an understanding of the underlying theory, and solution of some of the basic problems. It also provides a basis to study the voluminous shell literature. Beyond being primarily a textbook, it is intended also for self study by practising engineers who would like to learn more about the behaviour of shells.
The book has two parts: Part I deals with shells of isotropic materials. In this part the mathematical formulations are introduced involving curvilinear coordinates. The techniques of solutions and resulting behavior is compared to planar thin walled isotropic structures such as plates and beams.
Part II then treats the behavior of shells, involving anisotropic composite materials, so widely used today. The analysis involves the complications due to the many elastic constants, effects of transverse shear deformation, thermal thickening and offer effects arising from the properties of composite materials.
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Weitere Infos & Material


I Isotropic Shells.- 1 Curvilinear Coordinate Systems.- 2 Derivation of the Governing Equations for Thin Shells.- 3 Cylindrical Shells.- 4 Shells of Revolution Subjected to Axially Symmetric Loads.- 5 Conical Shells.- 6 Spherical Shells.- 7 Shells Of Other Shapes.- 8 Thermoelastic Effects on Shells.- 9 Laminated Shells and Adhesive Bonded Joints.- 10 Energy Methods for Shells.- 11 Elastic Stability of Shells.- 12 Vibration of Isotropic Shells.- 13 Very Thick Walled Cylindrical Shells.- II Composite Shells.- 14 Anisotropic Elasticity and Laminate Theory.- 15 Cylindrical Shells of Composite Materials.- 16 Composite Conical Shells.- 17 Orthotropic Shells of Revolution Including Transverse Shear Deformation and Thermal Thickening.- 18 Ellipsoidal and Spherical Composite Shells.- 19 Paraboloidal Shells Of Revolution.- 20 Buckling of Composite Material Shells.- 21 Vibrations of Shells Composed of Composite Materials.- 22 Energy Methods in Composite Material Shells.- 23 Very Thick Walled Composite Shells.- 24 Shells of Sandwich Construction.- Appendix Solutions To Select Problems.- Author Index.


is the H. Fletcher Brown Professor of Mechanical and Aerospace Engineering at the University of Delaware. In 1977 he received the ONR-AIAA Structural Mechanics Award for his research in composite materials, and in 1981 he was awarded an ASME Centennial Award. He is active as a consultant to government and industry. He recently received a Fellowship from the Japan Society for the Promotion of Science for 1985. He has been Chairman of the American Organizing Committee for the Japan-United States Conferences on Composite Materials three times (1981, 1983 and 1986).



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