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A Preisach Model for Monotonic Tension Response of Structural Mild Steel with Damage

Authorized Users Only
2020
Authors
Knežević, Petar
Šumarac, Dragoslav
Perović, Zoran
Dolićanin, Ćemal
Burzić, Zijah
Article (Published version)
Metadata
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Abstract
This paper presents the new type of Preisach model that describes the elastoplastic behavior of structural mild steel under axial monotonic tension load with damage. Newly developed model takes into account elastic region, horizontal yield plateau, plastic hardening region, and softening region due to material damage under tension. In order to study the monotonic behavior of structural mild steel and find suitable material properties for the model, monotonic axial tensile tests up to the failure are carried out. Tests are conducted on specimens of the three most common types of European structural steel S235, S275, and S355. The basis of the model represents a mathematical description of material single crystal monotonic axial behavior. In the multilinear mechanical model, a drop in stress, after achieving ultimate stress under tension is achieved by a negative stiffness element. The good agreement with experimental results is accomplished by parallel connection of infinitely many sing...le crystal elements, forming the polycrystalline model. The model represents a good solution for common engineering practice due to its geometrical representation in form of Preisach triangle.

Keywords:
monotonic axial strain / yield plateau / Preisach model / negative stiffness / damage
Source:
Periodica Polytechnica Civil Engineering, 2020, 64, 1, 296-303
Publisher:
  • Budapest University of Technology and Economics
Funding / projects:
  • Energy efficiency enhancement of buildings in Serbia and improvement of national regulative capacity for they are certification (RS-42012)

DOI: 10.3311/PPci.14809

ISSN: 1587-3773

WoS: 000514834600026

Scopus: 2-s2.0-85079722055
[ Google Scholar ]
1
1
URI
https://grafar.grf.bg.ac.rs/handle/123456789/2134
Collections
  • Катедра за техничку механику и теорију конструкција
Institution/Community
GraFar
TY  - JOUR
AU  - Knežević, Petar
AU  - Šumarac, Dragoslav
AU  - Perović, Zoran
AU  - Dolićanin, Ćemal
AU  - Burzić, Zijah
PY  - 2020
UR  - https://grafar.grf.bg.ac.rs/handle/123456789/2134
AB  - This paper presents the new type of Preisach model that describes the elastoplastic behavior of structural mild steel under axial monotonic tension load with damage. Newly developed model takes into account elastic region, horizontal yield plateau, plastic hardening region, and softening region due to material damage under tension. In order to study the monotonic behavior of structural mild steel and find suitable material properties for the model, monotonic axial tensile tests up to the failure are carried out. Tests are conducted on specimens of the three most common types of European structural steel S235, S275, and S355. The basis of the model represents a mathematical description of material single crystal monotonic axial behavior. In the multilinear mechanical model, a drop in stress, after achieving ultimate stress under tension is achieved by a negative stiffness element. The good agreement with experimental results is accomplished by parallel connection of infinitely many single crystal elements, forming the polycrystalline model. The model represents a good solution for common engineering practice due to its geometrical representation in form of Preisach triangle.
PB  - Budapest University of Technology and Economics
T2  - Periodica Polytechnica Civil Engineering
T1  - A Preisach Model for Monotonic Tension Response of Structural Mild Steel with Damage
EP  - 303
IS  - 1
SP  - 296
VL  - 64
DO  - 10.3311/PPci.14809
ER  - 
@article{
author = "Knežević, Petar and Šumarac, Dragoslav and Perović, Zoran and Dolićanin, Ćemal and Burzić, Zijah",
year = "2020",
abstract = "This paper presents the new type of Preisach model that describes the elastoplastic behavior of structural mild steel under axial monotonic tension load with damage. Newly developed model takes into account elastic region, horizontal yield plateau, plastic hardening region, and softening region due to material damage under tension. In order to study the monotonic behavior of structural mild steel and find suitable material properties for the model, monotonic axial tensile tests up to the failure are carried out. Tests are conducted on specimens of the three most common types of European structural steel S235, S275, and S355. The basis of the model represents a mathematical description of material single crystal monotonic axial behavior. In the multilinear mechanical model, a drop in stress, after achieving ultimate stress under tension is achieved by a negative stiffness element. The good agreement with experimental results is accomplished by parallel connection of infinitely many single crystal elements, forming the polycrystalline model. The model represents a good solution for common engineering practice due to its geometrical representation in form of Preisach triangle.",
publisher = "Budapest University of Technology and Economics",
journal = "Periodica Polytechnica Civil Engineering",
title = "A Preisach Model for Monotonic Tension Response of Structural Mild Steel with Damage",
pages = "303-296",
number = "1",
volume = "64",
doi = "10.3311/PPci.14809"
}
Knežević, P., Šumarac, D., Perović, Z., Dolićanin, Ć.,& Burzić, Z.. (2020). A Preisach Model for Monotonic Tension Response of Structural Mild Steel with Damage. in Periodica Polytechnica Civil Engineering
Budapest University of Technology and Economics., 64(1), 296-303.
https://doi.org/10.3311/PPci.14809
Knežević P, Šumarac D, Perović Z, Dolićanin Ć, Burzić Z. A Preisach Model for Monotonic Tension Response of Structural Mild Steel with Damage. in Periodica Polytechnica Civil Engineering. 2020;64(1):296-303.
doi:10.3311/PPci.14809 .
Knežević, Petar, Šumarac, Dragoslav, Perović, Zoran, Dolićanin, Ćemal, Burzić, Zijah, "A Preisach Model for Monotonic Tension Response of Structural Mild Steel with Damage" in Periodica Polytechnica Civil Engineering, 64, no. 1 (2020):296-303,
https://doi.org/10.3311/PPci.14809 . .

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