Ultrasonic-based monitoring of tapered roller bearings in frequency and time domains
ABSTRACT: In this paper the ultrasonic signal is used for early failure detection in tapered roller bearings. The faults studied were localized in outer race, inner race, cage and the rolling elements. The implemented failures emulate three distinct levels of severity. The ultrasonic signal analysis...
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Universidad de Tarapacá.
2017
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oai:scielo:S0718-330520170002002352017-06-19Ultrasonic-based monitoring of tapered roller bearings in frequency and time domainsQuiroga Méndez,JabidArdila Sánchez,OmarMartínez Gordillo,Gustavo Andrés Fault detection ultrasonic signal Kurtosis RMS ABSTRACT: In this paper the ultrasonic signal is used for early failure detection in tapered roller bearings. The faults studied were localized in outer race, inner race, cage and the rolling elements. The implemented failures emulate three distinct levels of severity. The ultrasonic signal analysis is performed using time domain parameters i.e. kurtosis and RMS, and in the frequency domain using the power spectral density obtained by the Welch periodogram. Although none of the studied parameter was able to extract the fault location, the RMS parameter presents the best performance as a feature to monitor allowing to identify faulty conditions and evaluate qualitatively the severity of the fault.info:eu-repo/semantics/openAccessUniversidad de Tarapacá.Ingeniare. Revista chilena de ingeniería v.25 n.2 20172017-06-01text/htmlhttp://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0718-33052017000200235en10.4067/S0718-33052017000200235 |
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Scielo Chile |
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Scielo Chile |
language |
English |
topic |
Fault detection ultrasonic signal Kurtosis RMS |
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Fault detection ultrasonic signal Kurtosis RMS Quiroga Méndez,Jabid Ardila Sánchez,Omar Martínez Gordillo,Gustavo Andrés Ultrasonic-based monitoring of tapered roller bearings in frequency and time domains |
description |
ABSTRACT: In this paper the ultrasonic signal is used for early failure detection in tapered roller bearings. The faults studied were localized in outer race, inner race, cage and the rolling elements. The implemented failures emulate three distinct levels of severity. The ultrasonic signal analysis is performed using time domain parameters i.e. kurtosis and RMS, and in the frequency domain using the power spectral density obtained by the Welch periodogram. Although none of the studied parameter was able to extract the fault location, the RMS parameter presents the best performance as a feature to monitor allowing to identify faulty conditions and evaluate qualitatively the severity of the fault. |
author |
Quiroga Méndez,Jabid Ardila Sánchez,Omar Martínez Gordillo,Gustavo Andrés |
author_facet |
Quiroga Méndez,Jabid Ardila Sánchez,Omar Martínez Gordillo,Gustavo Andrés |
author_sort |
Quiroga Méndez,Jabid |
title |
Ultrasonic-based monitoring of tapered roller bearings in frequency and time domains |
title_short |
Ultrasonic-based monitoring of tapered roller bearings in frequency and time domains |
title_full |
Ultrasonic-based monitoring of tapered roller bearings in frequency and time domains |
title_fullStr |
Ultrasonic-based monitoring of tapered roller bearings in frequency and time domains |
title_full_unstemmed |
Ultrasonic-based monitoring of tapered roller bearings in frequency and time domains |
title_sort |
ultrasonic-based monitoring of tapered roller bearings in frequency and time domains |
publisher |
Universidad de Tarapacá. |
publishDate |
2017 |
url |
http://www.scielo.cl/scielo.php?script=sci_arttext&pid=S0718-33052017000200235 |
work_keys_str_mv |
AT quirogamendezjabid ultrasonicbasedmonitoringoftaperedrollerbearingsinfrequencyandtimedomains AT ardilasanchezomar ultrasonicbasedmonitoringoftaperedrollerbearingsinfrequencyandtimedomains AT martinezgordillogustavoandres ultrasonicbasedmonitoringoftaperedrollerbearingsinfrequencyandtimedomains |
_version_ |
1714203445398863872 |