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Optimal plastic design of beams under bending and shear in plane strain

Publication date: 2012

Technical Transactions, 2012, Mechanics Issue 6-M (11) 2012, pp. 31 - 45

https://doi.org/10.4467/2353737XCT.14.097.1874

Authors

Władysław Egner
Instytut Mechaniki Stosowanej, Wydział Mechaniczny, Politechnika Krakowska
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Titles

Optimal plastic design of beams under bending and shear in plane strain

Abstract

The paper applies the boundary perturbation method (BPM) to optimal plastic design under bending with considerable shear effects. This method uses expansion of stress components and of the unknown boundary into power series of a small parameter. In the present paper the small parameter a represents the effects of shear. The shape is described by a power series resulting from boundary conditions. The loading of the cantilever beam consists of a concentrated moment and distributed loading regarded as a perturbing factor. The material of the beam is perfectly plastic, subject to the Huber–Mises–Hencky yield condition. The beam is in the plane strain state.

References


Information

Information: Technical Transactions, 2012, Mechanics Issue 6-M (11) 2012, pp. 31 - 45

Article type: Original article

Titles:

Polish:

Optimal plastic design of beams under bending and shear in plane strain

English:

Optimal plastic design of beams under bending and shear in plane strain

Authors

Instytut Mechaniki Stosowanej, Wydział Mechaniczny, Politechnika Krakowska

Published at: 2012

Article status: Open

Licence: None

Percentage share of authors:

Władysław Egner (Author) - 100%

Article corrections:

-

Publication languages:

Polish