Relationship Between the Threshold Stress Intensity Factor Ranges of the Material and the Transition From Short to Long Fatigue Crack

被引:0
|
作者
O. M. Herasymchuk
机构
[1] Pisarenko Institute of Problems of Strength,
[2] National Academy of Sciences of Ukraine,undefined
来源
Strength of Materials | 2014年 / 46卷
关键词
threshold stress intensity factor ranges; microstructurally short crack; physically small and long cracks; fatigue limit; high- and low-cycle fatigue; reversible plastic zone size; microstructure; titanium alloys;
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摘要
A relationship between the threshold stress intensity factor ranges of the material is established for microstructurally short, physically small and long fatigue cracks depending on the microstructure at a symmetrical loading cycle. The threshold stress intensity factor ranges calculated by the proposed concept for titanium alloy VT3-1 in different structural states agree well with those determined experimentally. The criteria are proposed for the transition from a small to a long fatigue crack depending on the level of the applied load amplitude. In the whole range of the load amplitudes, the condition when a reversible plastic zone at the crack tip reaches the grain size is taken as a criterion for the transition from a physically small to a long fatigue crack. In the high cycle fatigue region, the physically small crack growth range is to be divided into two areas because of a change in the mechanisms of the physically small crack growth upon the attainment by the stress intensity factor range of the threshold value for the long crack.
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页码:360 / 374
页数:14
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