Determination of the Actual Stress–Strain Diagram for Undermatching Welded Joint Using DIC and FEM
This paper presents new methodology for determining the actual stress–strain diagram based on analytical equations, in combination with numerical and experimental data. The first step was to use the 3D digital image correlation (DIC) to estimate true stress–strain diagram by replacing common analyti...
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doaj-fe7d9a5d965140bea53555a407c837b72021-08-26T14:01:31ZengMDPI AGMaterials1996-19442021-08-01144691469110.3390/ma14164691Determination of the Actual Stress–Strain Diagram for Undermatching Welded Joint Using DIC and FEMNenad Zoran Milošević0Aleksandar Stojan Sedmak1Gordana Miodrag Bakić2Vukić Lazić3Miloš Milošević4Goran Mladenović5Aleksandar Maslarević6Innovation Center of Faculty of Mechanical Engineering, Belgrade University, 11000 Belgrade, SerbiaFaculty of Mechanical Engineering, Belgrade University, 11000 Belgrade, SerbiaFaculty of Mechanical Engineering, Belgrade University, 11000 Belgrade, SerbiaFaculty of Engineering, University of Kragujevac, 34000 Kragujevac, SerbiaInnovation Center of Faculty of Mechanical Engineering, Belgrade University, 11000 Belgrade, SerbiaFaculty of Mechanical Engineering, Belgrade University, 11000 Belgrade, SerbiaInnovation Center of Faculty of Mechanical Engineering, Belgrade University, 11000 Belgrade, SerbiaThis paper presents new methodology for determining the actual stress–strain diagram based on analytical equations, in combination with numerical and experimental data. The first step was to use the 3D digital image correlation (DIC) to estimate true stress–strain diagram by replacing common analytical expression for contraction with measured values. Next step was to estimate the stress concentration by using a new methodology, based on recently introduced analytical expressions and numerical verification by the finite element method (FEM), to obtain actual stress–strain diagrams, as named in this paper. The essence of new methodology is to introduce stress concentration factor into the procedure of actual stress evaluation. New methodology is then applied to determine actual stress–strain diagrams for two undermatched welded joints with different rectangular cross-section and groove shapes, made of martensitic steels X10 CrMoVNb 9-1 and Armox 500T. Results indicated that new methodology is a general one, since it is not dependent on welded joint material and geometry.https://www.mdpi.com/1996-1944/14/16/4691actual stress–strain diagramundermatching weldmartensitic steelDICFEM |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Nenad Zoran Milošević Aleksandar Stojan Sedmak Gordana Miodrag Bakić Vukić Lazić Miloš Milošević Goran Mladenović Aleksandar Maslarević |
spellingShingle |
Nenad Zoran Milošević Aleksandar Stojan Sedmak Gordana Miodrag Bakić Vukić Lazić Miloš Milošević Goran Mladenović Aleksandar Maslarević Determination of the Actual Stress–Strain Diagram for Undermatching Welded Joint Using DIC and FEM Materials actual stress–strain diagram undermatching weld martensitic steel DIC FEM |
author_facet |
Nenad Zoran Milošević Aleksandar Stojan Sedmak Gordana Miodrag Bakić Vukić Lazić Miloš Milošević Goran Mladenović Aleksandar Maslarević |
author_sort |
Nenad Zoran Milošević |
title |
Determination of the Actual Stress–Strain Diagram for Undermatching Welded Joint Using DIC and FEM |
title_short |
Determination of the Actual Stress–Strain Diagram for Undermatching Welded Joint Using DIC and FEM |
title_full |
Determination of the Actual Stress–Strain Diagram for Undermatching Welded Joint Using DIC and FEM |
title_fullStr |
Determination of the Actual Stress–Strain Diagram for Undermatching Welded Joint Using DIC and FEM |
title_full_unstemmed |
Determination of the Actual Stress–Strain Diagram for Undermatching Welded Joint Using DIC and FEM |
title_sort |
determination of the actual stress–strain diagram for undermatching welded joint using dic and fem |
publisher |
MDPI AG |
series |
Materials |
issn |
1996-1944 |
publishDate |
2021-08-01 |
description |
This paper presents new methodology for determining the actual stress–strain diagram based on analytical equations, in combination with numerical and experimental data. The first step was to use the 3D digital image correlation (DIC) to estimate true stress–strain diagram by replacing common analytical expression for contraction with measured values. Next step was to estimate the stress concentration by using a new methodology, based on recently introduced analytical expressions and numerical verification by the finite element method (FEM), to obtain actual stress–strain diagrams, as named in this paper. The essence of new methodology is to introduce stress concentration factor into the procedure of actual stress evaluation. New methodology is then applied to determine actual stress–strain diagrams for two undermatched welded joints with different rectangular cross-section and groove shapes, made of martensitic steels X10 CrMoVNb 9-1 and Armox 500T. Results indicated that new methodology is a general one, since it is not dependent on welded joint material and geometry. |
topic |
actual stress–strain diagram undermatching weld martensitic steel DIC FEM |
url |
https://www.mdpi.com/1996-1944/14/16/4691 |
work_keys_str_mv |
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