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Fatigue Strength for Zero Stress Ratio

Fatigue tests under tensile and flexural load were carried out for various temperatures listed in Table 6.3 at a stress ratio of R = 0.05. The results obtained were considered as the data for A = 0 to estimate fatigue strength. [Pg.910]

Figu re 6.25 Tensile S-N curves for a frequency of 1 Hz and a stress ratio of 0.05 at various temperatures [Pg.911]

PE- UHMW Polyethylene-ultra high molecular weight [Pg.918]

BAM Federal Institute for Materials Research and Testing (Germany) [Pg.920]

EMMA Equatorial mount with mirror for acceleration [Pg.920]


Master Curve of Fatigue Strength for Zero Stress Ratio. 903... [Pg.885]

By establishing the master curve for fatigue strength of zero stress ratio for Nf, the fatigue strength for f, under arbitrary combinations of/and T can be determined. [Pg.905]

From the master curve for fatigue strength at zero stress ratio, the fatigue strength at zero stress ratio Of.o (ft,/, T) for any frequency and temperature can be derived. Appiying hypothesis D, Miyano et al. propose a formuia to estimate the fatigue strength Of (/,/ T, R) at an arbitrary combination of/, R, and T represented by Eq. 6.18 ... [Pg.906]

Master Curve for the Fatigue Strength at Zero Stress Ratio... [Pg.335]


See other pages where Fatigue Strength for Zero Stress Ratio is mentioned: [Pg.885]    [Pg.910]    [Pg.330]    [Pg.885]    [Pg.910]    [Pg.330]    [Pg.335]    [Pg.337]    [Pg.42]    [Pg.44]    [Pg.281]    [Pg.117]   


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Fatigue strength

Fatigue stressing

Master Curve for the Fatigue Strength at Zero Stress Ratio

Master Curve of Fatigue Strength for Zero Stress Ratio

Strength ratio

Stress ratio

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