Fatigue Strength of Induction-Hardened Test-Piece with Crack
スポンサーリンク
概要
- 論文の詳細を見る
One of the reasons why the fatigue limit remarkably rises in the notched specimen of steel which is induction-hardened, is that, the cracks produced do not propagate any further. In this connection, some experiments on rotary bending were made with the specimens of a plain carbon steel with 0.18%C, some of which are ordinary plain specimens and others have some crack, both were tested for two cases, ie. non-heat treated and induction-hardened. The results are as follows : (1) without any heat treatment fatigue limit a) ordinary plain specimens 20 kg/mm^2 b) specimens with some crack 10 kg/mm^2 (2) induction hardened a) ordinary plain specimens 54 kg/mm^2 b) specimens with some crack 48 kg/mm^2 The reduction rate of the crack is apparently less in the latter than in the former, which is less hardend. To explain this seemingly contradictory fact, Prof. Ishibashi's opinion has been applied that the tip of crack must be subjected only to tension stress during rotating bending tests.
- 一般社団法人日本機械学会の論文
著者
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Ueda Shiro
Railway Transportation Research Institute J.n.r.
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NAKAMURA Hiroshi
Railway Technical Research Institute, Japanese National Railways.
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AMAKASU Tatsuo
Railway Transportation Research Institute J.N.R.
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Amakasu Tatsuo
Railway Technical Research Institute Japanese National Railway
関連論文
- The Study on the Fatigue Strength by Varying the Stress-Amplitude with a Superposed Mini-Sinusoidal Stress Wave on the Base Sinusoidal Stress Wave : Report 1,Some Experimental Results of Fatigue Test by New Simple Device for Superimposing Secondary Mini-S
- An Experiment on the Effect of Induction Hardening on Fatigue Strength : Report 5,An Experiment in Relation to Fatigue Crack Propagation (the Journal and the Transactions of the Japan Society of Mechanical Engineers)
- Fatigue Strength of Induction-Hardened Test-Piece with Crack
- On the Fatigue Strength of Induction Hardened Large-Size Press-Fitted Specimen
- An Experiment on the Effect of Induction Hardening on Fatigue Strength : Report 4
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