A method for rapid estimation of residual stresses in metal samples produced by additive manufacturing

The mechanical methods for measuring residual stresses typically rely on so-called destructive techniques where some stress components can be determined based on part deflection after material removal (cutting, etching, drilling, etc.). While these methods don't provide a comprehensive represen...

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Main Authors: A. Fedorenko, D. Firsov, S. Evlashin, B. Fedulov, E. Lomakin
Format: Article
Language:English
Published: Gruppo Italiano Frattura 2024-04-01
Series:Fracture and Structural Integrity
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Online Access:https://www.fracturae.com/index.php/fis/article/view/4809/3998
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author A. Fedorenko
D. Firsov
S. Evlashin
B. Fedulov
E. Lomakin
author_facet A. Fedorenko
D. Firsov
S. Evlashin
B. Fedulov
E. Lomakin
author_sort A. Fedorenko
collection DOAJ
description The mechanical methods for measuring residual stresses typically rely on so-called destructive techniques where some stress components can be determined based on part deflection after material removal (cutting, etching, drilling, etc.). While these methods don't provide a comprehensive representation of residual stresses within the entire part, they can be readily applied in most manufacturing labs. In this study, we propose an efficient method for determining residual stress within additively manufactured cylindrical samples of stainless steel. The method is based on the assumption of a relation between the axial component of residual stress (normal to cross-section) and the cylinder radius. The general form of this relation is proposed based on data from numerical simulations using linear, parabolic or piecewise approximations. The parameters for the proposed relation are defined using equilibrium equations for total force and moment. The proposed method relies on an experiment with a mechanical cut along the cylinder. Consequently, the deflection of the cylinder halves after the cut allows for obtaining the equivalent bending moment
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institution Kabale University
issn 1971-8993
language English
publishDate 2024-04-01
publisher Gruppo Italiano Frattura
record_format Article
series Fracture and Structural Integrity
spelling doaj-art-72f28d936f4543e085569fd3e06a068d2024-12-02T05:52:29ZengGruppo Italiano FratturaFracture and Structural Integrity1971-89932024-04-01186826727910.3221/IGF-ESIS.68.1810.3221/IGF-ESIS.68.18A method for rapid estimation of residual stresses in metal samples produced by additive manufacturingA. FedorenkoD. FirsovS. EvlashinB. FedulovE. LomakinThe mechanical methods for measuring residual stresses typically rely on so-called destructive techniques where some stress components can be determined based on part deflection after material removal (cutting, etching, drilling, etc.). While these methods don't provide a comprehensive representation of residual stresses within the entire part, they can be readily applied in most manufacturing labs. In this study, we propose an efficient method for determining residual stress within additively manufactured cylindrical samples of stainless steel. The method is based on the assumption of a relation between the axial component of residual stress (normal to cross-section) and the cylinder radius. The general form of this relation is proposed based on data from numerical simulations using linear, parabolic or piecewise approximations. The parameters for the proposed relation are defined using equilibrium equations for total force and moment. The proposed method relies on an experiment with a mechanical cut along the cylinder. Consequently, the deflection of the cylinder halves after the cut allows for obtaining the equivalent bending momenthttps://www.fracturae.com/index.php/fis/article/view/4809/3998additive manufacturingresidual stressstainless steelmechanics of materialsmechanical properties
spellingShingle A. Fedorenko
D. Firsov
S. Evlashin
B. Fedulov
E. Lomakin
A method for rapid estimation of residual stresses in metal samples produced by additive manufacturing
Fracture and Structural Integrity
additive manufacturing
residual stress
stainless steel
mechanics of materials
mechanical properties
title A method for rapid estimation of residual stresses in metal samples produced by additive manufacturing
title_full A method for rapid estimation of residual stresses in metal samples produced by additive manufacturing
title_fullStr A method for rapid estimation of residual stresses in metal samples produced by additive manufacturing
title_full_unstemmed A method for rapid estimation of residual stresses in metal samples produced by additive manufacturing
title_short A method for rapid estimation of residual stresses in metal samples produced by additive manufacturing
title_sort method for rapid estimation of residual stresses in metal samples produced by additive manufacturing
topic additive manufacturing
residual stress
stainless steel
mechanics of materials
mechanical properties
url https://www.fracturae.com/index.php/fis/article/view/4809/3998
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