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Ultra-high-cycle fatigue

Recently, it has been found even in body-centred cubic metals that a specimen can fail in fatigue even beyond the limiting number of cycles (10 ). At a very large number of cycles (more than 10 °), the S-N curve may drop again [93,135]. This is called ultra-high-cycle fatigue (uhcf)... [Pg.360]

P. Luk S and L. Kunz Specific features of high-cycle and ultra-high-cycle fatigue. Fatigue and fracture of engineering materials and structures, 25(8) 747-753, 2002. [Pg.489]

Life distribution and P-S-N curve analysis of TC21 titanium alloy joint with Electron Beam Welding in ultra-high cycle fatigue regime... [Pg.2169]

Figure 3. Size and shape of specimen for ultra-high cycle fatigue. Figure 3. Size and shape of specimen for ultra-high cycle fatigue.
Probability distribution of fatigue life in ultra-high cycle fatigue regime... [Pg.2170]

Based on the fatigue life data of TC21 titanium with EBW in ultra-high cycle fatigue regime, the probability distribution of fatigue life at certain stress level is discussed in Kolmogorov criterion method and the P-S-N curve is obtained by maximum likelihood estimation method, the conclusions are as follows ... [Pg.2174]


See other pages where Ultra-high-cycle fatigue is mentioned: [Pg.2169]    [Pg.2170]    [Pg.2170]    [Pg.2171]    [Pg.413]    [Pg.59]    [Pg.61]   
See also in sourсe #XX -- [ Pg.360 ]




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