A Method for Solid Axle Flaw Inspection Based on Axle End Coupling by Phased Array Ultrasonic Technology

At present, the existing railway train solid axle inspection technologies have some disadvantages such as low inspection efficiency, limited ultrasonic coverage and missing detection. For these disadvantages, a method for solid axle inspection based on axle end coupling by advanced and mature phased...

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Main Authors: LIU Zhiyong, PENG Chaoyong
Format: Article
Language:zho
Published: Editorial Department of Electric Drive for Locomotives 2018-01-01
Series:机车电传动
Subjects:
Online Access:http://edl.csrzic.com/thesisDetails#10.13890/j.issn.1000-128x.2018.02.025
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author LIU Zhiyong
PENG Chaoyong
author_facet LIU Zhiyong
PENG Chaoyong
author_sort LIU Zhiyong
collection DOAJ
description At present, the existing railway train solid axle inspection technologies have some disadvantages such as low inspection efficiency, limited ultrasonic coverage and missing detection. For these disadvantages, a method for solid axle inspection based on axle end coupling by advanced and mature phased array ultrasonic technology was introduced. The method had some advantages such as better coverage, high inspection efficiency, strong inspection ability and stable inspection effect, which could replace the existing manual inspection process for solid axle.
format Article
id doaj-art-78729509e5ce4a0a935c4b6c4b441d9f
institution DOAJ
issn 1000-128X
language zho
publishDate 2018-01-01
publisher Editorial Department of Electric Drive for Locomotives
record_format Article
series 机车电传动
spelling doaj-art-78729509e5ce4a0a935c4b6c4b441d9f2025-08-20T03:09:15ZzhoEditorial Department of Electric Drive for Locomotives机车电传动1000-128X2018-01-0110811020912596A Method for Solid Axle Flaw Inspection Based on Axle End Coupling by Phased Array Ultrasonic TechnologyLIU ZhiyongPENG ChaoyongAt present, the existing railway train solid axle inspection technologies have some disadvantages such as low inspection efficiency, limited ultrasonic coverage and missing detection. For these disadvantages, a method for solid axle inspection based on axle end coupling by advanced and mature phased array ultrasonic technology was introduced. The method had some advantages such as better coverage, high inspection efficiency, strong inspection ability and stable inspection effect, which could replace the existing manual inspection process for solid axle.http://edl.csrzic.com/thesisDetails#10.13890/j.issn.1000-128x.2018.02.025solid axleaxle end couplingphased array ultrasonic technologyinspectiontransverse cracks
spellingShingle LIU Zhiyong
PENG Chaoyong
A Method for Solid Axle Flaw Inspection Based on Axle End Coupling by Phased Array Ultrasonic Technology
机车电传动
solid axle
axle end coupling
phased array ultrasonic technology
inspection
transverse cracks
title A Method for Solid Axle Flaw Inspection Based on Axle End Coupling by Phased Array Ultrasonic Technology
title_full A Method for Solid Axle Flaw Inspection Based on Axle End Coupling by Phased Array Ultrasonic Technology
title_fullStr A Method for Solid Axle Flaw Inspection Based on Axle End Coupling by Phased Array Ultrasonic Technology
title_full_unstemmed A Method for Solid Axle Flaw Inspection Based on Axle End Coupling by Phased Array Ultrasonic Technology
title_short A Method for Solid Axle Flaw Inspection Based on Axle End Coupling by Phased Array Ultrasonic Technology
title_sort method for solid axle flaw inspection based on axle end coupling by phased array ultrasonic technology
topic solid axle
axle end coupling
phased array ultrasonic technology
inspection
transverse cracks
url http://edl.csrzic.com/thesisDetails#10.13890/j.issn.1000-128x.2018.02.025
work_keys_str_mv AT liuzhiyong amethodforsolidaxleflawinspectionbasedonaxleendcouplingbyphasedarrayultrasonictechnology
AT pengchaoyong amethodforsolidaxleflawinspectionbasedonaxleendcouplingbyphasedarrayultrasonictechnology
AT liuzhiyong methodforsolidaxleflawinspectionbasedonaxleendcouplingbyphasedarrayultrasonictechnology
AT pengchaoyong methodforsolidaxleflawinspectionbasedonaxleendcouplingbyphasedarrayultrasonictechnology