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Nonlinear Finite Element Analysis of Concrete Structures

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Moreover, it is shown that a suitable analysis <strong>of</strong> the theoretical<br />

data results in a clear insight into the physical behaviour<br />

<strong>of</strong> the considered structures. Finally, it is demonstrated that<br />

the AXIPLANE-program for widely different structures exhibiting<br />

very delicate structural aspects gives predictions that are in<br />

close agreement with experimental evidence.<br />

INIS descriptors; A CODES, CLOSURES, COMPRESSION STRENGTH,<br />

CRACKS, DEFORMATION, FAILURES, FINITE ELEMENT METHOD, PRE-<br />

STRESSED CONCRETE, PRESSURE VESSELS, REINFORCED CONCRETE, SHEAR<br />

PROPERTIES, STRAIN HARDENING, STRAIN SOFTENING, STRAINS, STRESS<br />

ANALYSIS, STRESSES, STRUCTURAL MODELS, TENSILE PROPERTIES, ULTI­<br />

MATE STRENGTH.<br />

UDC 539.4 : 624.012.4 : 624.04<br />

ISBN 87-550-0649-3<br />

ISSN 0106-2840<br />

Risø Repro 1981

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