Effects of Elasticity and Compactness of Graphite on the Fatigue Strength of Spheroidal Graphite Cast Iron Based on Successive Surface Observations

In this paper, rotating bending fatigue tests of two kinds of spheroidal graphite cast iron were carried out in order to clarify the effects of elasticity and compactness of graphite on the fatigue strength of the two cast iron samples. One is as-received cast iron whose graphites are compressed by...

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Published inTransactions of the Japan Society of Mechanical Engineers Series A Vol. 58; no. 554; pp. 1779 - 1784
Main Authors NISITANI, Hironobu, NAKAE, Hiroshi, MINAMI, Kazuhiro
Format Journal Article
LanguageEnglish
Japanese
Published The Japan Society of Mechanical Engineers 1992
Subjects
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ISSN0387-5008
1884-8338
DOI10.1299/kikaia.58.1779

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Abstract In this paper, rotating bending fatigue tests of two kinds of spheroidal graphite cast iron were carried out in order to clarify the effects of elasticity and compactness of graphite on the fatigue strength of the two cast iron samples. One is as-received cast iron whose graphites are compressed by the matrix and the other is cast iron annealed at 550°C whose graphites exist more loosely. The crack initiation limit of the as-received material is about 10% higher than that of the annealed material in the plain and notched specimens. The effects were discussed through the behaviour of the microcrack, based on successive observations using the plastic replica method.
AbstractList In this paper, rotating bending fatigue tests of two kinds of spheroidal graphite cast iron were carried out in order to clarify the effects of elasticity and compactness of graphite on the fatigue strength of the two cast iron samples. One is as-received cast iron whose graphites are compressed by the matrix and the other is cast iron annealed at 550°C whose graphites exist more loosely. The crack initiation limit of the as-received material is about 10% higher than that of the annealed material in the plain and notched specimens. The effects were discussed through the behaviour of the microcrack, based on successive observations using the plastic replica method.
Author NISITANI, Hironobu
NAKAE, Hiroshi
MINAMI, Kazuhiro
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References (1) 例えば.張•明智•塙共編,球状黒鉛鋳鉄,(1983),アグネ
(5) 鈴木•大藪•植木•国尾,機論,51-464,A(1985),1224.
(11) 西谷•田中,機論,51-465.A(1985),1442.
(7) 杉山•浅見•黒岩,材料,40-448(1991),65.
(15) 西谷•内山•野口•中江,機講論,910-71,B(1991),197.
(9) 越智•石井•佐々木•小西,機講論910-17,A(1991),46.
(8) 遠藤,材料,38-443(1989),1139.
(14) 矢野,機論,55-509,A(1989),84.
(2) Fuller,A.G.,AFS Trans.,85(1978),527.
(13) 矢野,機論,52-481,A(1986),2150.
(10) 加藤•中野,機論,51-464,A(1985),1208.
(3) 塩田•小松,鋳物,54(1982),7,434.
(12) 広瀬•ほか4名,日本材料強度学会誌,16-4(1981),156.
(4) 祖父江,鋳物,51(1979),3,159.
(6) 原田•矢野•遠藤•川口,機論,54-501,A(1988),925.
References_xml – reference: (13) 矢野,機論,52-481,A(1986),2150.
– reference: (9) 越智•石井•佐々木•小西,機講論910-17,A(1991),46.
– reference: (4) 祖父江,鋳物,51(1979),3,159.
– reference: (12) 広瀬•ほか4名,日本材料強度学会誌,16-4(1981),156.
– reference: (2) Fuller,A.G.,AFS Trans.,85(1978),527.
– reference: (11) 西谷•田中,機論,51-465.A(1985),1442.
– reference: (7) 杉山•浅見•黒岩,材料,40-448(1991),65.
– reference: (6) 原田•矢野•遠藤•川口,機論,54-501,A(1988),925.
– reference: (1) 例えば.張•明智•塙共編,球状黒鉛鋳鉄,(1983),アグネ,
– reference: (15) 西谷•内山•野口•中江,機講論,910-71,B(1991),197.
– reference: (14) 矢野,機論,55-509,A(1989),84.
– reference: (10) 加藤•中野,機論,51-464,A(1985),1208.
– reference: (8) 遠藤,材料,38-443(1989),1139.
– reference: (3) 塩田•小松,鋳物,54(1982),7,434.
– reference: (5) 鈴木•大藪•植木•国尾,機論,51-464,A(1985),1224.
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Snippet In this paper, rotating bending fatigue tests of two kinds of spheroidal graphite cast iron were carried out in order to clarify the effects of elasticity and...
SourceID jstage
SourceType Publisher
StartPage 1779
SubjectTerms Compactness
Elasticity
Fatigue
Notch
Spheroidal Graphite Cast Iron
Successive Observations
Title Effects of Elasticity and Compactness of Graphite on the Fatigue Strength of Spheroidal Graphite Cast Iron Based on Successive Surface Observations
URI https://www.jstage.jst.go.jp/article/kikaia1979/58/554/58_554_1779/_article/-char/en
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