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Inelastic Analysis of Structure Under Variable Loads Theory and Engineering Applications

by Dieter Weichert

  • ISBN: 9780792366454
  • ISBN10: 079236645X

Inelastic Analysis of Structure Under Variable Loads Theory and Engineering Applications

by Dieter Weichert

  • List Price: $206.00
  • Binding: Hardcover
  • Publisher: Kluwer Academic Pub
  • Publish date: 11/01/2000
  • ISBN: 9780792366454
  • ISBN10: 079236645X
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Description: Preface. An early upper bound method for shakedown of beams and structures; P.S. Symonds. Shakedown limits for a general yield condition: implementation and application for a von Mises yield condition; A.R.S. Ponter, M. Engelhardt. Shakedown at finite elasto-plastic strains; H. Stumpf, B. Schieck. Shape optimization under shakedown constraints; K. Wiechmann, et al. Numerical simulations of thermoviscoplastic flow processes under cyclic dynamic loadings; W. Dornowski, P. Perzyna. Subdomain bounding technique for shakedown analysis of structures; Y. Liu, et al. Failure investigation of fiber-reinforced composite materials by shakedown analysis; A. Hachemi, et al. Analysis of masonry structures subject to variable loads: a numerical approach based on damage mechanics; A. Callerio, et al. CYCLONE - system for structural adaptation and limit analysis; A. Siemaszko, et al. Variational principles for shakedown analysis; N. Zouain, J.L. Silveira. Shakedown of elastic-plastic structures with non linear kinematical hardening by the bipotential approach; G. de Saxce, et al. Shakedown and fatigue damage in metal matrix composites; G.J. Dvorak, et al. On shakedown of elastic plastic bodies with brittle damage; D. Bruyanov, I. Roman. Simplified methods for the steady state inelastic analysis of cyclically loaded structures; K.V. Spiliopoulos. Direct finite element kinematical approaches in limit and shakedown analysis of shells and elbows; A.M. Yan, H. Nguyen-Dang. Shakedown and damage analysis applied to rocket engines; T. Hassine, et al. Reliability analysis of elasto-plastic structures under variable loads; M. Heitzer, M. Staat. Upper bounds on post-shakedown quantities in poroplasticity; G. Cocchetti, G. Maier. Fatigue behavior of fiber reinforced concrete: comparison between material and structural response. Shakedown analysis by elastic simulation; C. Polizzotto, et al. Application of the kinematic shakedown theorem to pavements design; M. Boulbibane, I.F. Collins.
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