The analysis of the influence of the thermal shocks on acoustic emission signal generated in cordierite ceramics

The paper describes a raw materials composition and manufacturing technology of cordierite material, applied to manufacturing of welding backing strips. The resistance of the cordierite specimens to thermal shock within the range of 150–320°C was analysed. Shocked samples, submitted to three - point...

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Main Authors: Z. RANACHOWSKI, P. RANACHOWSKI
Format: Article
Language:English
Published: Institute of Fundamental Technological Research Polish Academy of Sciences 2000-01-01
Series:Archives of Acoustics
Online Access:https://acoustics.ippt.pan.pl/index.php/aa/article/view/353
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author Z. RANACHOWSKI
P. RANACHOWSKI
author_facet Z. RANACHOWSKI
P. RANACHOWSKI
author_sort Z. RANACHOWSKI
collection DOAJ
description The paper describes a raw materials composition and manufacturing technology of cordierite material, applied to manufacturing of welding backing strips. The resistance of the cordierite specimens to thermal shock within the range of 150–320°C was analysed. Shocked samples, submitted to three - point mechanical stress, have been investigated by acoustic emission method. The results let the authors to conclude that there is a correlation between the Acoustic Emission (AE) signals parameter, describing the AE activity during the loading and the stage of material degradation caused by the applied thermal shock.
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id doaj-art-9c4ce5346f6948bfa982e978d14fc913
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publishDate 2000-01-01
publisher Institute of Fundamental Technological Research Polish Academy of Sciences
record_format Article
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spelling doaj-art-9c4ce5346f6948bfa982e978d14fc9132025-08-20T03:11:54ZengInstitute of Fundamental Technological Research Polish Academy of SciencesArchives of Acoustics0137-50752300-262X2000-01-01251The analysis of the influence of the thermal shocks on acoustic emission signal generated in cordierite ceramicsZ. RANACHOWSKI0P. RANACHOWSKI1Polish Academy of Sciences Institute of Fundamental Technological ResearchPolish Academy of Sciences Institute of Fundamental Technological ResearchThe paper describes a raw materials composition and manufacturing technology of cordierite material, applied to manufacturing of welding backing strips. The resistance of the cordierite specimens to thermal shock within the range of 150–320°C was analysed. Shocked samples, submitted to three - point mechanical stress, have been investigated by acoustic emission method. The results let the authors to conclude that there is a correlation between the Acoustic Emission (AE) signals parameter, describing the AE activity during the loading and the stage of material degradation caused by the applied thermal shock.https://acoustics.ippt.pan.pl/index.php/aa/article/view/353
spellingShingle Z. RANACHOWSKI
P. RANACHOWSKI
The analysis of the influence of the thermal shocks on acoustic emission signal generated in cordierite ceramics
Archives of Acoustics
title The analysis of the influence of the thermal shocks on acoustic emission signal generated in cordierite ceramics
title_full The analysis of the influence of the thermal shocks on acoustic emission signal generated in cordierite ceramics
title_fullStr The analysis of the influence of the thermal shocks on acoustic emission signal generated in cordierite ceramics
title_full_unstemmed The analysis of the influence of the thermal shocks on acoustic emission signal generated in cordierite ceramics
title_short The analysis of the influence of the thermal shocks on acoustic emission signal generated in cordierite ceramics
title_sort analysis of the influence of the thermal shocks on acoustic emission signal generated in cordierite ceramics
url https://acoustics.ippt.pan.pl/index.php/aa/article/view/353
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AT pranachowski theanalysisoftheinfluenceofthethermalshocksonacousticemissionsignalgeneratedincordieriteceramics
AT zranachowski analysisoftheinfluenceofthethermalshocksonacousticemissionsignalgeneratedincordieriteceramics
AT pranachowski analysisoftheinfluenceofthethermalshocksonacousticemissionsignalgeneratedincordieriteceramics