Direct methods for limit and shakedo...
Fuschi, Paolo.

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  • Direct methods for limit and shakedown analysis of structures = advanced computational algorithms and material modelling /
  • Record Type: Electronic resources : Monograph/item
    Title/Author: Direct methods for limit and shakedown analysis of structures/ edited by Paolo Fuschi, Aurora Angela Pisano, Dieter Weichert.
    Reminder of title: advanced computational algorithms and material modelling /
    other author: Fuschi, Paolo.
    Published: Cham :Springer International Publishing : : 2015.,
    Description: xii, 313 p. :ill., digital ;24 cm.
    [NT 15003449]: A stress-based variational model for ductile porous materials and its extension accounting for Lode angle effects -- Limit Analysis and macroscopic strength of porous materials with Coulomb matrix -- A direct method formulation for topology plastic design of continua -- The influence of limited kinematical hardening on shakedown of materials and structures -- Theoretical Basis and a Finite Element Formula for the Direct Calculation of Steady Plastic States -- On the statistical determination of yield strength, ultimate strength, and endurance limit of a particle reinforced metal matrix composite (PRMMC) -- A new starting point strategy for shakedown analysis -- Yield design of periodically heterogeneous plates -- RSDM-S: A Method for the Evaluation of the Shakedown Load of Elastoplastic Structures -- An efficient algorithm for shakedown analysis based on equality constrained sequential quadratic programming -- Limit analysis on RC-structures by a multi-yield-criteria numerical approach -- Shakedown analysis within the framework of strain gradient plasticity -- Shakedown analysis of 3D frames with an effective treatment of the load combinations -- Uncertain Multimode Failure and Shakedown Analysis of Shells -- Three-dimensional shakedown solutions for cross-anisotropic cohesive-frictional materials under moving loads.
    Contained By: Springer eBooks
    Subject: Plastic analysis (Engineering) - Mathematical models. -
    Online resource: http://dx.doi.org/10.1007/978-3-319-12928-0
    ISBN: 9783319129280 (electronic bk.)
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