Engineering
Engineering, 29.02.2020 06:07, koolja3

1. Fatigue equations are based solely on theoretical assumptions. Experimental data is only used to verify the theory. a. True. b. False.2. While most steels have a well‐defined endurance limit, both aluminum and titanium do not—they will both eventually fail at even the lowest alternating stress levels. a. True.
b. False3. The mean, or midrange, stress is the average of the maximum and minimum stress in a cycle. a. True.
b. FalseThe alternating, or amplitude, stress is the stress range from peak to valley, i. e., the difference between the maximum and minimum stresses. a. True.
b. False
4. Low‐cycle fatigue is defined as less than 103 cycles and high cycle fatigue is between 103 and 106 (or 107).a. True.
b. False5. Fatigue analysis for brittle materials is better‐defined and can be more generally applied than fatigue for ductile materials. a. True.
b. False6. Torsional fatigue is handled in the same manner as bending fatigue with the appropriate modifications to the ultimate and yield strengths. a. True.
b. False7. S‐N diagrams are based on fluctuating stresses but can be modified for reversible stresses. a. True.
b. False8. The Strain‐Life method for predicting fatigue failure is more accurate than the Stress‐Life method, but is more difficult to analyze. a. True.
b. False9. The Linear‐Elastic Fracture Mechanics method is based on the assumption that initial cracks do not exist in materials, and predicts fatigue failure when a crack initiates. a. True.
b. False

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