Non-Destructive Testing by Magnetic Noise Method of the Quality of Heat Treatment of Steel Samples Obtained by Additive Technology

The manufacture of products using additive technologies is accompanied by the unpredictable appearance of inhomogeneity of properties, anisotropy, residual stresses, porosity, and other defects. Therefore, there is a great relevance of non-destructive quality control of products obtained by additive...

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Main Authors: V. N. Busko, A. P. Kren, G. A. Lanzman
Format: Article
Language:English
Published: Belarusian National Technical University 2022-10-01
Series:Приборы и методы измерений
Subjects:
Online Access:https://pimi.bntu.by/jour/article/view/781
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author V. N. Busko
A. P. Kren
G. A. Lanzman
author_facet V. N. Busko
A. P. Kren
G. A. Lanzman
author_sort V. N. Busko
collection DOAJ
description The manufacture of products using additive technologies is accompanied by the unpredictable appearance of inhomogeneity of properties, anisotropy, residual stresses, porosity, and other defects. Therefore, there is a great relevance of non-destructive quality control of products obtained by additive technologies. The purpose of the paper is the experimental investigation of the possibility of testing and evaluation of the quality of heat treatment of three-dimensional and cast samples by non-destructive control methods.The low-alloy steel 09G2S samples, which was obtained by casting and selective laser sintering different modes of subsequent heat treatments were studied. The method of the Barkhausen effect and the instrumented indentation method for measuring the material hardness were applied.It was experimentally established that both methods are highly sensitive to annealed and normalized three-dimensional samples and their rejection. Compared to the hardness measurement method, which is mainly associated with phase-structural changes, the magnetic noise method due to selectivity to other controlled parameters is additionally sensitive to cast samples (at the same time the microstructures of cast and normalized three-dimensional samples are close to each other according to X-ray data).The magnetic noise method can be used as one of the physical methods for evaluation the quality and control of the heat treatment of 3D samples at the manufacturing stage when testing their types and modes, as well as sorting samples.
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issn 2220-9506
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publishDate 2022-10-01
publisher Belarusian National Technical University
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series Приборы и методы измерений
spelling doaj-art-f876f08e6cb447dc9fb3131318972b5c2025-02-03T11:37:39ZengBelarusian National Technical UniversityПриборы и методы измерений2220-95062414-04732022-10-0113322823610.21122/2220-9506-2022-13-3-228-236591Non-Destructive Testing by Magnetic Noise Method of the Quality of Heat Treatment of Steel Samples Obtained by Additive TechnologyV. N. Busko0A. P. Kren1G. A. Lanzman2Institute of Applied Physics of the National Academy of Science of BelarusInstitute of Applied Physics of the National Academy of Science of BelarusInstitute of Applied Physics of the National Academy of Science of BelarusThe manufacture of products using additive technologies is accompanied by the unpredictable appearance of inhomogeneity of properties, anisotropy, residual stresses, porosity, and other defects. Therefore, there is a great relevance of non-destructive quality control of products obtained by additive technologies. The purpose of the paper is the experimental investigation of the possibility of testing and evaluation of the quality of heat treatment of three-dimensional and cast samples by non-destructive control methods.The low-alloy steel 09G2S samples, which was obtained by casting and selective laser sintering different modes of subsequent heat treatments were studied. The method of the Barkhausen effect and the instrumented indentation method for measuring the material hardness were applied.It was experimentally established that both methods are highly sensitive to annealed and normalized three-dimensional samples and their rejection. Compared to the hardness measurement method, which is mainly associated with phase-structural changes, the magnetic noise method due to selectivity to other controlled parameters is additionally sensitive to cast samples (at the same time the microstructures of cast and normalized three-dimensional samples are close to each other according to X-ray data).The magnetic noise method can be used as one of the physical methods for evaluation the quality and control of the heat treatment of 3D samples at the manufacturing stage when testing their types and modes, as well as sorting samples.https://pimi.bntu.by/jour/article/view/781additive technologies and materialsselective laser meltingheat treatmentmagnetic noise methodcontact-dynamic method
spellingShingle V. N. Busko
A. P. Kren
G. A. Lanzman
Non-Destructive Testing by Magnetic Noise Method of the Quality of Heat Treatment of Steel Samples Obtained by Additive Technology
Приборы и методы измерений
additive technologies and materials
selective laser melting
heat treatment
magnetic noise method
contact-dynamic method
title Non-Destructive Testing by Magnetic Noise Method of the Quality of Heat Treatment of Steel Samples Obtained by Additive Technology
title_full Non-Destructive Testing by Magnetic Noise Method of the Quality of Heat Treatment of Steel Samples Obtained by Additive Technology
title_fullStr Non-Destructive Testing by Magnetic Noise Method of the Quality of Heat Treatment of Steel Samples Obtained by Additive Technology
title_full_unstemmed Non-Destructive Testing by Magnetic Noise Method of the Quality of Heat Treatment of Steel Samples Obtained by Additive Technology
title_short Non-Destructive Testing by Magnetic Noise Method of the Quality of Heat Treatment of Steel Samples Obtained by Additive Technology
title_sort non destructive testing by magnetic noise method of the quality of heat treatment of steel samples obtained by additive technology
topic additive technologies and materials
selective laser melting
heat treatment
magnetic noise method
contact-dynamic method
url https://pimi.bntu.by/jour/article/view/781
work_keys_str_mv AT vnbusko nondestructivetestingbymagneticnoisemethodofthequalityofheattreatmentofsteelsamplesobtainedbyadditivetechnology
AT apkren nondestructivetestingbymagneticnoisemethodofthequalityofheattreatmentofsteelsamplesobtainedbyadditivetechnology
AT galanzman nondestructivetestingbymagneticnoisemethodofthequalityofheattreatmentofsteelsamplesobtainedbyadditivetechnology