Rate‐Type Concrete Creep Law with Reduced Time
- 1 March 1984
- journal article
- Published by American Society of Civil Engineers (ASCE) in Journal of Engineering Mechanics
- Vol. 110 (3) , 329-340
- https://doi.org/10.1061/(asce)0733-9399(1984)110:3(329)
Abstract
For creep analysis of large structural systems, the linear aging integral‐type creep law needs to be converted to a rate‐type form which consists of a system of first‐order linear differential equations with age‐dependent coefficients. The system may be visualized by the Kelvin chain model with age‐dependent elastic moduli and viscosities. In the existing formulation, the independent variable is actual time. It is shown that, by using as the independent variable a certain reduced time which increases with time at a gradually declining rate, one reduces the number of differential equations needed to describe creep within the given time range, thereby making numerical structural analysis more efficient. An algorithm for identifying the material parameters from given creep data, based on minimization of a sum of squared deviations, is also presented. Thermodynamic restrictions on the material coefficients are analyzed. Finally, the capability of closely approximating available creep data is demonstrated.Keywords
This publication has 12 references indexed in Scilit:
- Double-power logarithmic law for concrete creepCement and Concrete Research, 1984
- Input of creep and shrinkage characteristics for a structural analysis programMaterials and Structures, 1982
- Theory of Creep and Shrinkage in Concrete Structures: A Précis of Recent DevelopmentsPublished by Elsevier ,1975
- Computation of Kelvin chain retardation spectra of aging concreteCement and Concrete Research, 1974
- Computation of age-dependent relaxation spectraCement and Concrete Research, 1974
- Rate-type creep law of aging concrete based on maxwell chainMaterials and Structures, 1974
- Thermomechanical analysis of viscoelastic solidsInternational Journal for Numerical Methods in Engineering, 1970
- A numerical method of visco-elastic stress analysisInternational Journal of Mechanical Sciences, 1968
- Approximate laplace transform inversions in viscoelastic stress analysisAIAA Journal, 1964
- Structural analysis of viscoelastic materialsAIAA Journal, 1964