Dominant factors for very-high-cycle fatigue of high-strength steels and a new design method for components

Author:

Matsunaga H.123,Sun C.4,Hong Y.4,Murakami Y.5

Affiliation:

1. Department of Mechanical Engineering; Kyushu University; Fukuoka Japan

2. Research Center for Hydrogen Industrial Use and Storage (HYDROGENIUS); Kyushu University; Fukuoka Japan

3. International Institute for Carbon-Neutral Energy Research (I2CNER); Kyushu University; Fukuoka Japan

4. LNM, Institute of Mechanics; Chinese Academy of Sciences; Beijing China

5. Professor Emeritus; Kyushu University; Fukuoka Japan

Publisher

Wiley

Subject

Mechanical Engineering,Mechanics of Materials,General Materials Science

Reference42 articles.

1. Murakami , Y. Ueda , T. Nomoto , T. Murakami , Y. 1998 Proceeding of the 24th Symposium on Fatigue, Soc. Mater. Sic., Japan 47 50

2. Factors influencing the mechanism of superlong fatigue failure in steels;Murakami;Fatigue Fract. Eng. Mater. Struct.,1999

3. On the mechanism of fatigue failure in the superlong life regime (N > 107 cycles). Part 1: influence of hydrogen trapped by inclusions;Murakami;Fatigue Fract. Eng. Mater. Struct.,2000

4. On the mechanism of fatigue failure in the superlong life regime (N > 107 cycles). Part II: influence of hydrogen trapped by inclusions;Murakami;Fatigue Fract. Eng. Mater. Struct.,2000

5. Acceleration of superlong fatigue failure by hydrogen trapped by inclusions and elimination of conventional fatigue limit;Murakami;Tetsu-to-Hagane,2000

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