Fatigue life investigation of notched TC4 specimens subjected to different patterns of laser shock peening

The exhaustion of constructive ways for increasing the service life of parts has led to the development of new methods which can improve their material properties during operation under various loading conditions. Laser shock peening (LSP) induces compressive residual stress field which prevents fat...

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Main Authors: M. Zhelnin, A. Kostina, A. Iziumova, A. Vshivkov, E. Gachegova, O. Plekhov, S. Swaroop
Format: Article
Language:English
Published: Gruppo Italiano Frattura 2023-07-01
Series:Fracture and Structural Integrity
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Online Access:https://www.fracturae.com/index.php/fis/article/view/4193/3823
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author M. Zhelnin
A. Kostina
A. Iziumova
A. Vshivkov
E. Gachegova
O. Plekhov
S. Swaroop
author_facet M. Zhelnin
A. Kostina
A. Iziumova
A. Vshivkov
E. Gachegova
O. Plekhov
S. Swaroop
author_sort M. Zhelnin
collection DOAJ
description The exhaustion of constructive ways for increasing the service life of parts has led to the development of new methods which can improve their material properties during operation under various loading conditions. Laser shock peening (LSP) induces compressive residual stress field which prevents fatigue crack initiation and propagation in components. Characteristics of laser impact and treatment patterns play an important role in efficiency of LSP application for improvement of fatigue properties. This work is devoted to the experimental examination of two LSP patterns to reveal the most optimal scheme from fatigue live improvement point of view. Proposed LSP pattern allowed one to increase the fatigue life of specimens with semi-circular notch by an order of magnitude. The numerical simulation of the LSP was performed to visualize the residual stress field of treated specimen after loading and to give the interpretation of the experimentally observed improvement of fatigue life
format Article
id doaj-art-75b6576c21d947928228fa39190512e4
institution Kabale University
issn 1971-8993
language English
publishDate 2023-07-01
publisher Gruppo Italiano Frattura
record_format Article
series Fracture and Structural Integrity
spelling doaj-art-75b6576c21d947928228fa39190512e42025-01-03T01:41:05ZengGruppo Italiano FratturaFracture and Structural Integrity1971-89932023-07-01176510011110.3221/IGF-ESIS.65.0810.3221/IGF-ESIS.65.08Fatigue life investigation of notched TC4 specimens subjected to different patterns of laser shock peeningM. ZhelninA. KostinaA. IziumovaA. VshivkovE. GachegovaO. PlekhovS. SwaroopThe exhaustion of constructive ways for increasing the service life of parts has led to the development of new methods which can improve their material properties during operation under various loading conditions. Laser shock peening (LSP) induces compressive residual stress field which prevents fatigue crack initiation and propagation in components. Characteristics of laser impact and treatment patterns play an important role in efficiency of LSP application for improvement of fatigue properties. This work is devoted to the experimental examination of two LSP patterns to reveal the most optimal scheme from fatigue live improvement point of view. Proposed LSP pattern allowed one to increase the fatigue life of specimens with semi-circular notch by an order of magnitude. The numerical simulation of the LSP was performed to visualize the residual stress field of treated specimen after loading and to give the interpretation of the experimentally observed improvement of fatigue lifehttps://www.fracturae.com/index.php/fis/article/view/4193/3823laser shock peeningfatigue lifetitanium alloy tc4johnson-cook plasticity model
spellingShingle M. Zhelnin
A. Kostina
A. Iziumova
A. Vshivkov
E. Gachegova
O. Plekhov
S. Swaroop
Fatigue life investigation of notched TC4 specimens subjected to different patterns of laser shock peening
Fracture and Structural Integrity
laser shock peening
fatigue life
titanium alloy tc4
johnson-cook plasticity model
title Fatigue life investigation of notched TC4 specimens subjected to different patterns of laser shock peening
title_full Fatigue life investigation of notched TC4 specimens subjected to different patterns of laser shock peening
title_fullStr Fatigue life investigation of notched TC4 specimens subjected to different patterns of laser shock peening
title_full_unstemmed Fatigue life investigation of notched TC4 specimens subjected to different patterns of laser shock peening
title_short Fatigue life investigation of notched TC4 specimens subjected to different patterns of laser shock peening
title_sort fatigue life investigation of notched tc4 specimens subjected to different patterns of laser shock peening
topic laser shock peening
fatigue life
titanium alloy tc4
johnson-cook plasticity model
url https://www.fracturae.com/index.php/fis/article/view/4193/3823
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AT aiziumova fatiguelifeinvestigationofnotchedtc4specimenssubjectedtodifferentpatternsoflasershockpeening
AT avshivkov fatiguelifeinvestigationofnotchedtc4specimenssubjectedtodifferentpatternsoflasershockpeening
AT egachegova fatiguelifeinvestigationofnotchedtc4specimenssubjectedtodifferentpatternsoflasershockpeening
AT oplekhov fatiguelifeinvestigationofnotchedtc4specimenssubjectedtodifferentpatternsoflasershockpeening
AT sswaroop fatiguelifeinvestigationofnotchedtc4specimenssubjectedtodifferentpatternsoflasershockpeening