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After 12 weeks, patients receiving the iron pills reported an average 47.7 percent decrease in fatigue, and those on placebo a 28.8 percent decrease.
Due to the presence of defects, stress concentration could occur, causing crack initiation and consequently a decrease in fatigue strength.
Grain boundary oxidation and cracking was identified as the major cause for the decrease in fatigue life under compressive hold.
The application of salt solution resulted in extensive corrosion of the solder joints and a decrease in fatigue life.
The decrease in fatigue between pre and post-treatment was significantly larger than between baseline and pre-treatment.
For all specimens, no hydrogen-related damage or decrease in fatigue life due to the presence of hydrogen was observed.
Corrosion fatigue tests induced an additional decrease in fatigue life for both sealing treatments.
Decrease in fatigue life was observed for coated specimens in comparison to base metal.
In general, anodizing and plasma electrolytic oxidation led to a significant decrease in fatigue strength.
The decrease in fatigue properties in the unnotched coated samples is comparable to that reported for the notched uncoated specimens.
Heat treatment changes the size and morphology of Si, which leads to a decrease in fatigue property.
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