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A return mapping algorithm for plane stress elastoplasticity

International Journal for Numerical Methods in Engineering · 1986 · Vol. 22(3) · pp. 649–670
J.C. SimoRobert L. Taylor

Abstract

Abstract An unconditionally stable algorithm for plane stress elastoplasticity is developed, based upon the notion of elastic predictor‐return mapping (plastic corrector). Enforcement of the consistency condition is shown to reduce to the solution of a simple nonlinear equation. Consistent elastoplastic tangent moduli are obtained by exact linearization of the algorithm. Use of these moduli is essential in order to preserve the asymptotic rate of quadratic convergence of Newton methods. The accuracy of the algorithm is assessed by means of iso‐error maps. The excellent performance of the algorithm for large time steps is illustrated in numerical experiments.

Advanced Numerical Methods in Computational MathematicsComposite Structure Analysis and OptimizationElasticity and Material ModelingMathematicsLinearizationRate of convergenceTangentNonlinear systemAlgorithmConvergence (economics)ModuliApplied mathematicsQuadratic equation
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685
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12.62
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References
Consistent tangent operators for rate-independent elastoplasticity
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Journal of Applied Mechanics · 1985 · 1,184 citations
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International Journal for Numerical Methods in Engineering · 1986 · 812 citations
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