Study of a New Type of Broaching Anti-climber

In order to achieve the uniform energy absorption of the vehicle during the collision process of the high-speed EMUs and all vehicles involved in collision energy absorption, to improve the crashworthiness of the vehicle, a new type of broaching anticlimber was designed in view of the actual applica...

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Main Author: LIANG Juxing
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.2018.03.009
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author LIANG Juxing
author_facet LIANG Juxing
author_sort LIANG Juxing
collection DOAJ
description In order to achieve the uniform energy absorption of the vehicle during the collision process of the high-speed EMUs and all vehicles involved in collision energy absorption, to improve the crashworthiness of the vehicle, a new type of broaching anticlimber was designed in view of the actual application of the existing anti-climber, which could be controlled by cutting thickness and cutting stroke. By using the finite element software LS-DYNA, the effect of initial cutting thickness on the whole cutting absorption process was studied. The impact test of the anti-climber was carried out and the cushion stroke of the anti-climber was investigated, and the results were compared with the numerical analysis results. The results showed that when the initial cutting thickness was thin, the chip had a spiral shape, the crimping curvature was small, the initial peak force was low, and the cutting process was more stable. Due to the adjustable cutting stroke and thickness, the interface force could be controlled in a certain range during the collision, which was beneficial to ensure the safety of the body and crew.
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institution Kabale University
issn 1000-128X
language zho
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publisher Editorial Department of Electric Drive for Locomotives
record_format Article
series 机车电传动
spelling doaj-art-efa96bad703042c28e1deec806e9024e2025-08-20T03:48:58ZzhoEditorial Department of Electric Drive for Locomotives机车电传动1000-128X2018-01-01485120913526Study of a New Type of Broaching Anti-climberLIANG JuxingIn order to achieve the uniform energy absorption of the vehicle during the collision process of the high-speed EMUs and all vehicles involved in collision energy absorption, to improve the crashworthiness of the vehicle, a new type of broaching anticlimber was designed in view of the actual application of the existing anti-climber, which could be controlled by cutting thickness and cutting stroke. By using the finite element software LS-DYNA, the effect of initial cutting thickness on the whole cutting absorption process was studied. The impact test of the anti-climber was carried out and the cushion stroke of the anti-climber was investigated, and the results were compared with the numerical analysis results. The results showed that when the initial cutting thickness was thin, the chip had a spiral shape, the crimping curvature was small, the initial peak force was low, and the cutting process was more stable. Due to the adjustable cutting stroke and thickness, the interface force could be controlled in a certain range during the collision, which was beneficial to ensure the safety of the body and crew.http://edl.csrzic.com/thesisDetails#10.13890/j.issn.1000-128x.2018.03.009broaching anti-climberbuffer peak forceenergy absorption devicecutting thickness
spellingShingle LIANG Juxing
Study of a New Type of Broaching Anti-climber
机车电传动
broaching anti-climber
buffer peak force
energy absorption device
cutting thickness
title Study of a New Type of Broaching Anti-climber
title_full Study of a New Type of Broaching Anti-climber
title_fullStr Study of a New Type of Broaching Anti-climber
title_full_unstemmed Study of a New Type of Broaching Anti-climber
title_short Study of a New Type of Broaching Anti-climber
title_sort study of a new type of broaching anti climber
topic broaching anti-climber
buffer peak force
energy absorption device
cutting thickness
url http://edl.csrzic.com/thesisDetails#10.13890/j.issn.1000-128x.2018.03.009
work_keys_str_mv AT liangjuxing studyofanewtypeofbroachinganticlimber