Unifying Treatment of Notch Effects in Fatigue

According to the concept of "linear notch mechanics" proposed recently by one of authers, it is supposed that not only the crack initiation limit σw1 but also the crack propagation limit σw2 of a notched specimen can be evaluated unifyingly by the maximum elastic stress at the notch root σ...

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Published inTransactions of the Japan Society of Mechanical Engineers Series A Vol. 51; no. 463; pp. 784 - 789
Main Authors NISHITANI, Hironobu, ENDO, Masahiro
Format Journal Article
LanguageEnglish
Japanese
Published The Japan Society of Mechanical Engineers 1985
Subjects
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ISSN0387-5008
1884-8338
DOI10.1299/kikaia.51.784

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Abstract According to the concept of "linear notch mechanics" proposed recently by one of authers, it is supposed that not only the crack initiation limit σw1 but also the crack propagation limit σw2 of a notched specimen can be evaluated unifyingly by the maximum elastic stress at the notch root σmax and the notch radius ρ alone. Some previous results concerning σw2 and the present experimental results concerning σw1 and σw2 support the above presumption.
AbstractList According to the concept of "linear notch mechanics" proposed recently by one of authers, it is supposed that not only the crack initiation limit σw1 but also the crack propagation limit σw2 of a notched specimen can be evaluated unifyingly by the maximum elastic stress at the notch root σmax and the notch radius ρ alone. Some previous results concerning σw2 and the present experimental results concerning σw1 and σw2 support the above presumption.
Author ENDO, Masahiro
NISHITANI, Hironobu
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crossref_primary_10_1016_0142_1123_95_93537_C
crossref_primary_10_1016_j_ijfatigue_2020_105560
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(14) 石田,学振129委員会資料(昭39).
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(6) 西谷•遠藤,機講論,No.820-12(昭57-4),182.
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(15) Nisitani, H. and Kawano, K. Proc.13th Japan Congress on Materials Research-Metalic Mater,(1968),49.
(16) 小林•中沢,機論,35-277(昭44),1856.
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References_xml – reference: (1) 石橋,金属の疲労と破壊の防止,(増訂改版),(昭42), 52,養賢堂.
– reference: (5) 西谷,機論,49-447,A(昭58),1353.
– reference: (3) Nisitani, H. and Isida, M.,Proc. Joint Conf. Fxperimental Mechanics, Hawaii, (1982),150.
– reference: (13) 西谷•野田,機講論,No.840-1(昭59-4),23.
– reference: (9) 村上•ほか2名,機論,48-430,A(昭57),800.
– reference: (15) Nisitani, H. and Kawano, K. Proc.13th Japan Congress on Materials Research-Metalic Mater,(1968),49.
– reference: (6) 西谷•遠藤,機講論,No.820-12(昭57-4),182.
– reference: (16) 小林•中沢,機論,35-277(昭44),1856.
– reference: (10) Nisitani, H., Proc. ICF3, Munchen (1973),1-513.
– reference: (11) 西谷•石田,機論,39-317(昭48),9.
– reference: (14) 石田,学振129委員会資料(昭39).
– reference: (4) Nisitani, H., Proc. ICM2(1972),321.
– reference: (7) 村上•ほか2名,機論,47-423,A(昭56),1194.
– reference: (8) 村上•ほか2名,機論,48-427,A(昭57),312.
– reference: (12) 西谷•ほか2名,機論,50-451,A(昭59),341。
– reference: (2) 西谷,機論,34-259(昭43),371.
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Snippet According to the concept of "linear notch mechanics" proposed recently by one of authers, it is supposed that not only the crack initiation limit σw1 but also...
SourceID jstage
SourceType Publisher
StartPage 784
SubjectTerms Evaluation of Fatigue Limit
Fatigue
Fatigue Strength
Linear Notch Mechanics
Notch Effects
Rotating Bending
Title Unifying Treatment of Notch Effects in Fatigue
URI https://www.jstage.jst.go.jp/article/kikaia1979/51/463/51_463_784/_article/-char/en
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