A Noncyclic Method for Plastic Shakedown Analysis

Author:

Reinhardt W.1

Affiliation:

1. Babcock & Wilcox Canada, 581 Coronation Boulevard, Cambridge, ON, N1R 5V3, Canada

Abstract

Shakedown is a cyclic phenomenon, and for its analysis it seems natural to employ a cyclic analysis method. Two problems are associated when this direct approach is used in finite element analysis. First, the analysis typically needs to be stabilized over several cycles, and the analysis of each individual cycle may need a considerable amount of computing time. Second, even in cases where a stable cycle is known to exist, the finite element analysis can show a small continuing amount of strain accumulation. For elastic shakedown, noncyclic analysis methods that use Melan’s theorem have been proposed. The present paper extends noncyclic lower bound methods to the analysis of plastic shakedown. The proposed method is demonstrated with several example problems.

Publisher

ASME International

Subject

Mechanical Engineering,Mechanics of Materials,Safety, Risk, Reliability and Quality

Reference12 articles.

1. Limit Analysis of Structures at Thermal Cycling

2. Elastic-Plastic Behaviour of Thin Tubes Subjected to Internal Pressure and Intermittent High-Heat Fluxes With Application to Fast-Nuclear Reactor Fuel Elements;Bree;J. Strain Anal.

3. New Secondary Stress Evaluation Criteria Suitable for Finite Element Analyses;Okamoto

4. Shakedown and Ratcheting Directives of ASME B&PV Code and their Execution;Kalnins

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