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08-01-2024

Modeling the Yield Surface of a Composite Medium Made from Rigid-Plastic Materials Using Piecewise Quadratic Yield Criteria the Case of a Symmetric Plane Reinforcement 2. The Case of a Symmetric Plane Reinforcement

Author: P. Yankovskii

Published in: Mechanics of Composite Materials | Issue 6/2024

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Abstract

The article continues the study of modeling the yield surface of composite materials with rigid-plastic properties, focusing on a special case of symmetric plane reinforcement. It builds on previous work by developing a mathematical model to calculate the yield surface in the 3D space of average stresses in a plane stress state. The model considers isotropic constituents with different resistances to tension and compression, approximated by piecewise quadratic and/or piecewise linear relations. The yield curves of the composite material are constructed clearly in the space of principal averaged stresses, making the model particularly relevant for engineering practices such as axisymmetric deformation of fibrous plates. The study also highlights the influence of approximation parameters and reinforcement structure on the shape and size of yield curves, confirming the associated plastic flow rule numerically. This work extends the applicability of known theorems and methods for rigid-plastic bodies to the considered compositions, making it a valuable resource for specialists in the field.

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Metadata
Title
Modeling the Yield Surface of a Composite Medium Made from Rigid-Plastic Materials Using Piecewise Quadratic Yield Criteria the Case of a Symmetric Plane Reinforcement 2. The Case of a Symmetric Plane Reinforcement
Author
P. Yankovskii
Publication date
08-01-2024
Publisher
Springer US
Published in
Mechanics of Composite Materials / Issue 6/2024
Print ISSN: 0191-5665
Electronic ISSN: 1573-8922
DOI
https://doi.org/10.1007/s11029-023-10159-x

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