Evaluation and Research on Vibration Fatigue Lifetime of On-board IGBT Based on Physical-statistical Model

In the on-board environment of new energy passenger vehicles, IGBT modules are prone to the risk of vibration fatigue failure due to the influence of road roughness and engine rotation. In order to ensure the reliability of IGBT modules in service, it is of great significance to evaluate their vibra...

Full description

Saved in:
Bibliographic Details
Main Authors: YU Hui, LU Shengwen, CHEN Yan, LIU Min'an
Format: Article
Language:zho
Published: Editorial Office of Control and Information Technology 2023-06-01
Series:Kongzhi Yu Xinxi Jishu
Subjects:
Online Access:http://ctet.csrzic.com/thesisDetails#10.13889/j.issn.2096-5427.2023.03.016
Tags: Add Tag
No Tags, Be the first to tag this record!
_version_ 1849224923471413248
author YU Hui
LU Shengwen
CHEN Yan
LIU Min'an
author_facet YU Hui
LU Shengwen
CHEN Yan
LIU Min'an
author_sort YU Hui
collection DOAJ
description In the on-board environment of new energy passenger vehicles, IGBT modules are prone to the risk of vibration fatigue failure due to the influence of road roughness and engine rotation. In order to ensure the reliability of IGBT modules in service, it is of great significance to evaluate their vibration fatigue lifetime. The internal structure of IGBT module is complicated, so it is impossible to directly evaluate the vibration fatigue lifetime based on a physical model alone. To this end, an evaluation method is proposed in this paper to determine the vibration fatigue lifetime of IGBT modules. Firstly, the failure lifetime data of IGBT modules under high vibration magnitudes are obtained by an acceleration test. Secondly, the reliability lifetime distribution under the actual working conditions is obtained from the lifetime distribution statistical model based on the Weibull distribution, and then the reliability lifetime data in the practical application is obtained. The experimental results show that this method can effectively predict the failure rate of IGBT modules used in batches, which provides guarantee for reasonable management and control of application risks.
format Article
id doaj-art-06abe8816e9b412ab16b3758fac000bc
institution Kabale University
issn 2096-5427
language zho
publishDate 2023-06-01
publisher Editorial Office of Control and Information Technology
record_format Article
series Kongzhi Yu Xinxi Jishu
spelling doaj-art-06abe8816e9b412ab16b3758fac000bc2025-08-25T06:48:24ZzhoEditorial Office of Control and Information TechnologyKongzhi Yu Xinxi Jishu2096-54272023-06-0111512039334634Evaluation and Research on Vibration Fatigue Lifetime of On-board IGBT Based on Physical-statistical ModelYU HuiLU ShengwenCHEN YanLIU Min'anIn the on-board environment of new energy passenger vehicles, IGBT modules are prone to the risk of vibration fatigue failure due to the influence of road roughness and engine rotation. In order to ensure the reliability of IGBT modules in service, it is of great significance to evaluate their vibration fatigue lifetime. The internal structure of IGBT module is complicated, so it is impossible to directly evaluate the vibration fatigue lifetime based on a physical model alone. To this end, an evaluation method is proposed in this paper to determine the vibration fatigue lifetime of IGBT modules. Firstly, the failure lifetime data of IGBT modules under high vibration magnitudes are obtained by an acceleration test. Secondly, the reliability lifetime distribution under the actual working conditions is obtained from the lifetime distribution statistical model based on the Weibull distribution, and then the reliability lifetime data in the practical application is obtained. The experimental results show that this method can effectively predict the failure rate of IGBT modules used in batches, which provides guarantee for reasonable management and control of application risks.http://ctet.csrzic.com/thesisDetails#10.13889/j.issn.2096-5427.2023.03.016IGBT modulevibration fatigue lifetimeaccelerated testingreliabilityelectric vehicle
spellingShingle YU Hui
LU Shengwen
CHEN Yan
LIU Min'an
Evaluation and Research on Vibration Fatigue Lifetime of On-board IGBT Based on Physical-statistical Model
Kongzhi Yu Xinxi Jishu
IGBT module
vibration fatigue lifetime
accelerated testing
reliability
electric vehicle
title Evaluation and Research on Vibration Fatigue Lifetime of On-board IGBT Based on Physical-statistical Model
title_full Evaluation and Research on Vibration Fatigue Lifetime of On-board IGBT Based on Physical-statistical Model
title_fullStr Evaluation and Research on Vibration Fatigue Lifetime of On-board IGBT Based on Physical-statistical Model
title_full_unstemmed Evaluation and Research on Vibration Fatigue Lifetime of On-board IGBT Based on Physical-statistical Model
title_short Evaluation and Research on Vibration Fatigue Lifetime of On-board IGBT Based on Physical-statistical Model
title_sort evaluation and research on vibration fatigue lifetime of on board igbt based on physical statistical model
topic IGBT module
vibration fatigue lifetime
accelerated testing
reliability
electric vehicle
url http://ctet.csrzic.com/thesisDetails#10.13889/j.issn.2096-5427.2023.03.016
work_keys_str_mv AT yuhui evaluationandresearchonvibrationfatiguelifetimeofonboardigbtbasedonphysicalstatisticalmodel
AT lushengwen evaluationandresearchonvibrationfatiguelifetimeofonboardigbtbasedonphysicalstatisticalmodel
AT chenyan evaluationandresearchonvibrationfatiguelifetimeofonboardigbtbasedonphysicalstatisticalmodel
AT liuminan evaluationandresearchonvibrationfatiguelifetimeofonboardigbtbasedonphysicalstatisticalmodel