Combined fatigue experiments on full scale turbine components
Author:
Publisher
Emerald
Reference12 articles.
1. An engineering predictive design approach of high cycle fatigue reliability of shot peened metallic parts
2. Surface Characteristics and High Cycle Fatigue Performance of Shot Peened Magnesium Alloy ZK60
3. The effect of angle on dovetail fretting experiments in Ti-6Al-4V
4. Application of a combined high and low cycle fatigue life model on life prediction of SC blade
5. Numerical and experimental investigations into life assessment of blade–disc connections of gas turbines
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