Qualitative visualization of the development of stresses through infrared thermography

In this work, the IR thermography has been used to study the steel specimens (DIN 50125 Standard) undergoing the tensile tests. The tensile tests were performed using GUNT® Hamburg Universal Material Tester. The tensile specimens were clamped, and the test force was applied using a hand-operated hydraulic system. A dial gauge measured the elongation of the specimens. The steel specimens were coated with high emissivity paint. Using the WP 300.20 system for data acquisition, the measured values for force and displacement were recorded in a PC. The IR thermographic imaging was performed using the FLIR® T1030sc IR camera and ResearchIR Max software. The tests have revealed that the steel specimens show noticeable thermal signature when undergoing tensile loading.

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Bibliographic Details
Main Authors: Stange, E., Andleeb, Z., Khawaja, H. A.
Format: Journal Contribution biblioteca
Language:English
Published: 2019
Subjects:ИК-термография, Испытания на растяжение, Тепловая характеристика, IR thermography, Tensile tests, Thermal signature, Hydraulic system, Elongation, Tensile loading,
Online Access:http://hdl.handle.net/1834/16139
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spelling dig-aquadocs-1834-161392021-05-19T06:59:13Z Qualitative visualization of the development of stresses through infrared thermography Визуальное отображение развития напряжения с помощью ИК-термографии Stange, E. Andleeb, Z. Khawaja, H. A. ИК-термография Испытания на растяжение Тепловая характеристика IR thermography Tensile tests Thermal signature Hydraulic system Elongation Tensile loading In this work, the IR thermography has been used to study the steel specimens (DIN 50125 Standard) undergoing the tensile tests. The tensile tests were performed using GUNT® Hamburg Universal Material Tester. The tensile specimens were clamped, and the test force was applied using a hand-operated hydraulic system. A dial gauge measured the elongation of the specimens. The steel specimens were coated with high emissivity paint. Using the WP 300.20 system for data acquisition, the measured values for force and displacement were recorded in a PC. The IR thermographic imaging was performed using the FLIR® T1030sc IR camera and ResearchIR Max software. The tests have revealed that the steel specimens show noticeable thermal signature when undergoing tensile loading. В работе ИК-термография используется для изучения стальных образцов (стандарт DIN 50125), проходящих испытание на растяжение. Испытания на растяжение проводились с использованием универсального тестера материалов GUNT® Hamburg. Образцы, предназначенные для растяжения, зажимались с помощью гидравлической системы с ручным управлением. Стрелочный индикатор измерял удлинение образцов. Стальные образцы покрывались краской с высокой излучательной способностью. Полученные значения силы и смещения записывались на ПК с использованием системы WP 300.20 для сбора данных. Термографическое изображение выполнено с помощью инфракрасной камеры FLIR® T1030sc и программного обеспечения ResearchIR Max. Испытания показали, что образцы из стали демонстрируют заметные тепловые характеристики при растягивающей нагрузке. Published 2020-02-07T11:36:57Z 2020-02-07T11:36:57Z 2019 Journal Contribution Refereed 1560-9278 10.21443/1560-9278-2019-22-4-503-507 http://hdl.handle.net/1834/16139 en http://vestnik.mstu.edu.ru/show-eng.shtml?art=2043 pp.503-507
institution UNESCO
collection DSpace
country Francia
countrycode FR
component Bibliográfico
access En linea
databasecode dig-aquadocs
tag biblioteca
region Europa del Oeste
libraryname Repositorio AQUADOCS
language English
topic ИК-термография
Испытания на растяжение
Тепловая характеристика
IR thermography
Tensile tests
Thermal signature
Hydraulic system
Elongation
Tensile loading
ИК-термография
Испытания на растяжение
Тепловая характеристика
IR thermography
Tensile tests
Thermal signature
Hydraulic system
Elongation
Tensile loading
spellingShingle ИК-термография
Испытания на растяжение
Тепловая характеристика
IR thermography
Tensile tests
Thermal signature
Hydraulic system
Elongation
Tensile loading
ИК-термография
Испытания на растяжение
Тепловая характеристика
IR thermography
Tensile tests
Thermal signature
Hydraulic system
Elongation
Tensile loading
Stange, E.
Andleeb, Z.
Khawaja, H. A.
Qualitative visualization of the development of stresses through infrared thermography
description In this work, the IR thermography has been used to study the steel specimens (DIN 50125 Standard) undergoing the tensile tests. The tensile tests were performed using GUNT® Hamburg Universal Material Tester. The tensile specimens were clamped, and the test force was applied using a hand-operated hydraulic system. A dial gauge measured the elongation of the specimens. The steel specimens were coated with high emissivity paint. Using the WP 300.20 system for data acquisition, the measured values for force and displacement were recorded in a PC. The IR thermographic imaging was performed using the FLIR® T1030sc IR camera and ResearchIR Max software. The tests have revealed that the steel specimens show noticeable thermal signature when undergoing tensile loading.
format Journal Contribution
topic_facet ИК-термография
Испытания на растяжение
Тепловая характеристика
IR thermography
Tensile tests
Thermal signature
Hydraulic system
Elongation
Tensile loading
author Stange, E.
Andleeb, Z.
Khawaja, H. A.
author_facet Stange, E.
Andleeb, Z.
Khawaja, H. A.
author_sort Stange, E.
title Qualitative visualization of the development of stresses through infrared thermography
title_short Qualitative visualization of the development of stresses through infrared thermography
title_full Qualitative visualization of the development of stresses through infrared thermography
title_fullStr Qualitative visualization of the development of stresses through infrared thermography
title_full_unstemmed Qualitative visualization of the development of stresses through infrared thermography
title_sort qualitative visualization of the development of stresses through infrared thermography
publishDate 2019
url http://hdl.handle.net/1834/16139
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