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nielsen m.p.; hoang l.c. - limit analysis and concrete plasticity
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Limit Analysis and Concrete Plasticity

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Dettagli

Genere:Libro
Lingua: Inglese
Editore:

CRC Press

Pubblicazione: 12/2010
Edizione: Edizione nuova, 3° edizione





Note Editore

First published in 1984, Limit Analysis and Concrete Plasticity explains for advanced design engineers the principles of plasticity theory and its application to the design of reinforced and prestressed concrete structures, providing a thorough understanding of the subject, rather than simply applying current design formulas. Updated and revised throughout, Limit Analysis and Concrete Plasticity, Third Edition adds— Reinforcement design formulas for three-dimensional stress fields that enable design of solid structures (also suitable for implementation in computer-based lower bound optimizations) Improved explanations of the crack sliding theory and new solutions for beams with arbitrary curved shear cracks, continuous beams, lightly shear reinforced beams and beams with large axial compression More accurate treatment of and solutions for beams with circular cross-section Applications of crack sliding theory to punching shear problems New solutions that illustrate the implication of initial cracking on load-carrying capacity of disks Yield condition for the limiting case of isotropically cracked disk The authors also devote an entirely new chapter to a recently developed theory of rigid-plastic dynamics for seismic design of concrete structures. In comparison with time-history analyses, the new theory is simpler to use and leads to large material savings. With this chapter, plasticity design methods for both statical and dynamical loads are now covered by the book.




Sommario

IntroductionThe Theory of PlasticityConstitutive EquationsExtremum Principles for Rigid-Plastic MaterialsThe Solution of Plasticity ProblemsReinforced Concrete StructuresYield ConditionsConcreteYield Conditions for Reinforced DisksYield Conditions for SlabsReinforcement DesignThe Theory of Plain ConcreteStatical ConditionsGeometrical ConditionsVirtual WorkConstitutive EquationsThe Theory of Plane Strain for Coulomb MaterialsApplicationsDisksStatical ConditionsGeometrical ConditionsVirtual WorkConstitutive EquationsExact Solutions for Isotropic DisksThe Effective Compressive Strength of Reinforced DisksGeneral Theory of Lower Bound SolutionsStrut and Tie ModelsShear WallsHomogenous Reinforcement SolutionsDesign According to the Elastic TheoryBeamsBeams in BendingBeams in ShearBeams in TorsionCombined Bending, Shear, and TorsionSlabsStatical ConditionsGeometrical ConditionsVirtual Work, Boundary ConditionsConstitutive EquationsExact Solutions for Isotropic SlabsUpper Bound Solutions for Isotropic SlabsLower Bound SolutionsOrthotropic SlabsAnalytical Optimum Reinforcement SolutionsNumerical MethodsMembrane ActionPunching Shear of SlabsIntroductionInternal Loads or ColumnsEdge and Corner LoadsConcluding RemarksShear in JointsIntroductionAnalysis of Joints by Plastic TheoryStrength of Different Types of JointsThe Bond Strength of Reinforcing BarsIntroductionThe Local Failure MechanismFailure MechanismsAnalysis of Failure MechanismsAssessment of Anchor and Splice StrengthEffect of Transverse Pressure and Support ReactionEffect of Transverse ReinforcementConcluding Remarks










Altre Informazioni

ISBN:

9781439803967

Condizione: Nuovo
Dimensioni: 10 x 7 in Ø 3.68 lb
Formato: Copertina rigida
Illustration Notes:669 b/w images, 6 tables and Equation heavy
Pagine Arabe: 816


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