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Results, reported in S N diagrams, show that rheocasting improves the as-cast alloy mean fatigue strength, by 36% at 107 cycles.
HFMI treatment increased the mean fatigue strength by 26% and the characteristic fatigue strengths by 3%.
As-welded samples showed a mean fatigue strength of 353 MPa and a characteristic fatigue strength of 306 MPa.
The mean fatigue strength of reduced pressure mixed acrylic bone cement is double that of cement mixed by hand using an open bowl, 11,354±6441 cycles to failure for reduced pressure mixing in comparison with 5938±3199 cycles for mixing under atmospheric conditions.
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However, the variability in mean fatigue strengths of reduced pressure mixed bone cement is greater for some mixing devices.
That means strength times strength, times strength, times strength equals power".
That means that the fatigue strength at 106 cycles is higher that at 108 cycles.
The influence of mean stress on fatigue strength of smooth specimens made of EN AW 6056 and transition of failure mechanism from the high cycle fatigue (HCF) to the very high cycle fatigue regime (VHCF) are discussed.
A statistical evaluation based on the results of the finite element analyses and the fatigue test data collected from the literature was performed to determine the mean and characteristic fatigue strength.
A tensile mean stress decreased the fatigue strength dramatically.
To explore the potentials of CSP as a means of improving fatigue strength, carbonized chrome-molybdenum alloy steel (JIS SCM415) has been analyzed in the non-peened, shot-peened and CSP conditions with respect to processing times, residual stress and cyclic-stress curves.
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