Numerical investigation on the prefabricated crack propagation of FV520B stainless steel

FV520B is a common stainless steel for manufacturing centrifugal compressor impeller and shaft. The internal metal flaw destroys the continuity of the material matrix, resulting in the crack propagation fracture of the component, which seriously reduces the service life of the equipment. In this pap...

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Main Authors: Juyi Pan, Ming Qin, Songying Chen
Format: Article
Language:English
Published: Elsevier 2017-01-01
Series:Results in Physics
Online Access:http://www.sciencedirect.com/science/article/pii/S2211379717308707
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spelling doaj-72a7f2fa94e148949842418785c217d02020-11-25T01:18:35ZengElsevierResults in Physics2211-37972017-01-01737383743Numerical investigation on the prefabricated crack propagation of FV520B stainless steelJuyi Pan0Ming Qin1Songying Chen2Key Laboratory of High-efficiency and Clean Mechanical Manufacture, School of Mechanical Engineering, Shandong University, Jinan 250061, PR ChinaKey Laboratory of High-efficiency and Clean Mechanical Manufacture, School of Mechanical Engineering, Shandong University, Jinan 250061, PR ChinaCorresponding author.; Key Laboratory of High-efficiency and Clean Mechanical Manufacture, School of Mechanical Engineering, Shandong University, Jinan 250061, PR ChinaFV520B is a common stainless steel for manufacturing centrifugal compressor impeller and shaft. The internal metal flaw destroys the continuity of the material matrix, resulting in the crack propagation fracture of the component, which seriously reduces the service life of the equipment. In this paper, Abaqus software was used to simulate the prefabricated crack propagation of FV520B specimen with unilateral gap. The results of static crack propagation simulation results show that the maximum value of stress–strain located at the tip of the crack and symmetrical distributed like a butterfly along the prefabricated crack direction, the maximum stress is 1990 MPa and the maximum strain is 9.489 × 10−3. The Mises stress and stress intensity factor KI increases with the increase of the expansion step, the critical value of crack initiation is reached at the 6th extension step. The dynamic crack propagation simulation shows that the crack propagation path is perpendicular to the load loading direction. Similarly, the maximum Mises stress located at the crack tip and is symmetrically distributed along the crack propagation direction. The critical stress range of the crack propagation is 23.3–43.4 MPa. The maximum value of stress–strain curve located at the 8th extension step, that is, the crack initiation point, the maximum stress is 55.22 MPa, and the maximum strain is 2.26 × 10−4. On the crack tip, the stress changed as 32.24–40.16 MPa, the strain is at 1.292 × 10−4–1.897 × 10−4. Keywords: FV520B, Crack propagation, Mises stress, Stress–strain, Numerical investigationhttp://www.sciencedirect.com/science/article/pii/S2211379717308707
collection DOAJ
language English
format Article
sources DOAJ
author Juyi Pan
Ming Qin
Songying Chen
spellingShingle Juyi Pan
Ming Qin
Songying Chen
Numerical investigation on the prefabricated crack propagation of FV520B stainless steel
Results in Physics
author_facet Juyi Pan
Ming Qin
Songying Chen
author_sort Juyi Pan
title Numerical investigation on the prefabricated crack propagation of FV520B stainless steel
title_short Numerical investigation on the prefabricated crack propagation of FV520B stainless steel
title_full Numerical investigation on the prefabricated crack propagation of FV520B stainless steel
title_fullStr Numerical investigation on the prefabricated crack propagation of FV520B stainless steel
title_full_unstemmed Numerical investigation on the prefabricated crack propagation of FV520B stainless steel
title_sort numerical investigation on the prefabricated crack propagation of fv520b stainless steel
publisher Elsevier
series Results in Physics
issn 2211-3797
publishDate 2017-01-01
description FV520B is a common stainless steel for manufacturing centrifugal compressor impeller and shaft. The internal metal flaw destroys the continuity of the material matrix, resulting in the crack propagation fracture of the component, which seriously reduces the service life of the equipment. In this paper, Abaqus software was used to simulate the prefabricated crack propagation of FV520B specimen with unilateral gap. The results of static crack propagation simulation results show that the maximum value of stress–strain located at the tip of the crack and symmetrical distributed like a butterfly along the prefabricated crack direction, the maximum stress is 1990 MPa and the maximum strain is 9.489 × 10−3. The Mises stress and stress intensity factor KI increases with the increase of the expansion step, the critical value of crack initiation is reached at the 6th extension step. The dynamic crack propagation simulation shows that the crack propagation path is perpendicular to the load loading direction. Similarly, the maximum Mises stress located at the crack tip and is symmetrically distributed along the crack propagation direction. The critical stress range of the crack propagation is 23.3–43.4 MPa. The maximum value of stress–strain curve located at the 8th extension step, that is, the crack initiation point, the maximum stress is 55.22 MPa, and the maximum strain is 2.26 × 10−4. On the crack tip, the stress changed as 32.24–40.16 MPa, the strain is at 1.292 × 10−4–1.897 × 10−4. Keywords: FV520B, Crack propagation, Mises stress, Stress–strain, Numerical investigation
url http://www.sciencedirect.com/science/article/pii/S2211379717308707
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AT mingqin numericalinvestigationontheprefabricatedcrackpropagationoffv520bstainlesssteel
AT songyingchen numericalinvestigationontheprefabricatedcrackpropagationoffv520bstainlesssteel
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