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An integrated load increment method for finite elasto–plastic stress analysis

✍ Scribed by S. Y. Cheng; T. R. Hsu; J. J. M. Too


Publisher
John Wiley and Sons
Year
1980
Tongue
English
Weight
404 KB
Volume
15
Category
Article
ISSN
0029-5981

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✦ Synopsis


Abstract

A new computational scheme, named the ‘Integrated Load Increment’ method (ILI), has been developed to handle elasto–plastic analysis of solids by the finite element variational technique. This scheme allows considerably larger loading steps to be applied to the structure without deviating from its nonlinear, load‐deformation relationship. It has been shown that these relationships can be evaluated by integrating the nonlinear constitutive equations within each load increment under certain conditions. A numerical example on a pressurized thick‐walled cylinder indicates that a 240 per cent improvement in computational efficiency and substantial reduction of loading steps over the conventional load incremental method can be achieved by the ILI technique.


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