FATIGUE LIFE PREDICTION OF NOTCHED STRUCTURE USING COMBINED CRITICAL PLANE-CRITICAL DISTANCE APPROACH (MT)

In engineering practice, due to various functional requirements, structures with geometric discontinuities occur widely; in addition, most structures undergo complex multiaxial loads, which drives the development of relevant theories. As a result, to provide reference for structural anti-fatigue des...

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Main Authors: LIAO Ding, ZHU ShunPeng, GAO JieWei, NIU XiaoPeng, HE JinChao
Format: Article
Language:zho
Published: Editorial Office of Journal of Mechanical Strength 2023-01-01
Series:Jixie qiangdu
Subjects:
Online Access:http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2023.02.027
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author LIAO Ding
ZHU ShunPeng
GAO JieWei
NIU XiaoPeng
HE JinChao
author_facet LIAO Ding
ZHU ShunPeng
GAO JieWei
NIU XiaoPeng
HE JinChao
author_sort LIAO Ding
collection DOAJ
description In engineering practice, due to various functional requirements, structures with geometric discontinuities occur widely; in addition, most structures undergo complex multiaxial loads, which drives the development of relevant theories. As a result, to provide reference for structural anti-fatigue design and ensuring their operation safety, the establishment of fatigue lifing methods for notched components under multiaxial loads is critical and indispensable. In this paper, by combining the popular Fatemi-Socie critical plane model with the critical distance theory, a fatigue lifing model for notched structures under multiaxial loads was established, and its effectiveness was verified with the fatigue test data of TC4 stepped shaft specimens. Results show that the proposed model can overcome the conservative estimation problem when performing fatigue lifing based on the stress-strain data of critical points, with all predicted fatigue lives within two-time error bands. Finally, the method was applied to the fatigue life prediction of a turbine compressor disc.
format Article
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institution Kabale University
issn 1001-9669
language zho
publishDate 2023-01-01
publisher Editorial Office of Journal of Mechanical Strength
record_format Article
series Jixie qiangdu
spelling doaj-art-d81b1455322441659648b0a4c8f6702c2025-01-15T02:40:13ZzhoEditorial Office of Journal of Mechanical StrengthJixie qiangdu1001-96692023-01-0145446136351295FATIGUE LIFE PREDICTION OF NOTCHED STRUCTURE USING COMBINED CRITICAL PLANE-CRITICAL DISTANCE APPROACH (MT)LIAO DingZHU ShunPengGAO JieWeiNIU XiaoPengHE JinChaoIn engineering practice, due to various functional requirements, structures with geometric discontinuities occur widely; in addition, most structures undergo complex multiaxial loads, which drives the development of relevant theories. As a result, to provide reference for structural anti-fatigue design and ensuring their operation safety, the establishment of fatigue lifing methods for notched components under multiaxial loads is critical and indispensable. In this paper, by combining the popular Fatemi-Socie critical plane model with the critical distance theory, a fatigue lifing model for notched structures under multiaxial loads was established, and its effectiveness was verified with the fatigue test data of TC4 stepped shaft specimens. Results show that the proposed model can overcome the conservative estimation problem when performing fatigue lifing based on the stress-strain data of critical points, with all predicted fatigue lives within two-time error bands. Finally, the method was applied to the fatigue life prediction of a turbine compressor disc.http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2023.02.027FatigueNotchCompressor discCritical planeCritical distanceLife prediction
spellingShingle LIAO Ding
ZHU ShunPeng
GAO JieWei
NIU XiaoPeng
HE JinChao
FATIGUE LIFE PREDICTION OF NOTCHED STRUCTURE USING COMBINED CRITICAL PLANE-CRITICAL DISTANCE APPROACH (MT)
Jixie qiangdu
Fatigue
Notch
Compressor disc
Critical plane
Critical distance
Life prediction
title FATIGUE LIFE PREDICTION OF NOTCHED STRUCTURE USING COMBINED CRITICAL PLANE-CRITICAL DISTANCE APPROACH (MT)
title_full FATIGUE LIFE PREDICTION OF NOTCHED STRUCTURE USING COMBINED CRITICAL PLANE-CRITICAL DISTANCE APPROACH (MT)
title_fullStr FATIGUE LIFE PREDICTION OF NOTCHED STRUCTURE USING COMBINED CRITICAL PLANE-CRITICAL DISTANCE APPROACH (MT)
title_full_unstemmed FATIGUE LIFE PREDICTION OF NOTCHED STRUCTURE USING COMBINED CRITICAL PLANE-CRITICAL DISTANCE APPROACH (MT)
title_short FATIGUE LIFE PREDICTION OF NOTCHED STRUCTURE USING COMBINED CRITICAL PLANE-CRITICAL DISTANCE APPROACH (MT)
title_sort fatigue life prediction of notched structure using combined critical plane critical distance approach mt
topic Fatigue
Notch
Compressor disc
Critical plane
Critical distance
Life prediction
url http://www.jxqd.net.cn/thesisDetails#10.16579/j.issn.1001.9669.2023.02.027
work_keys_str_mv AT liaoding fatiguelifepredictionofnotchedstructureusingcombinedcriticalplanecriticaldistanceapproachmt
AT zhushunpeng fatiguelifepredictionofnotchedstructureusingcombinedcriticalplanecriticaldistanceapproachmt
AT gaojiewei fatiguelifepredictionofnotchedstructureusingcombinedcriticalplanecriticaldistanceapproachmt
AT niuxiaopeng fatiguelifepredictionofnotchedstructureusingcombinedcriticalplanecriticaldistanceapproachmt
AT hejinchao fatiguelifepredictionofnotchedstructureusingcombinedcriticalplanecriticaldistanceapproachmt