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Machine Design Practice Test: Design Against Fluctuating Load
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Avg score: 66% Most missed: “A flat plate 30mm wide and “t”mm wide is subjected to a tensile force of 5kN. Th…”
Design Against Fluctuating Load topics include: Stress concentration, fluctuating stresses, fatigue failures and its factors. Design against fluctuating load is a method used to design machine components that are subjected to fluctuating loading.  Here are some criteria used to separate safe and fail designs: Gerber method: Used for ductile materials based on ultimate strength Goodman method: Used for ductile or brittle materials based on ultimate strength Soderberg method: Used for yield strength and ductile materials  Here are some other criteria: Mean stress: σ m = σ max + σ min... Show more
Machine Design Practice Test: Design Against Fluctuating Load
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17 Questions

1. Which of the following reduces the stress concentration?
2. Use of multiple notches in a V shaped flat plate will
3. Is it logical to use fluid analogy to understand the phenomenon of stress concentration?
4. A flat plate 30mm wide and “t”mm wide is subjected to a tensile force of 5kN. The plate has a circular hole of diameter 15mm with the centre coinciding with the diagonal intersection point of the rectangle. If stress concentration factor=2.16, find the thickness of the plate if maximum allowable tensile stress is 80N/mm².
5. For an elliptical hole on a flat plate, if width of the hole in direction of the load decrease, Stress Concentration Factor will______
6. The stress represented by cos (t) belongs to which category?
7. Fatigue failure is time dependent failure.
8. In which of the following case stress concentration factor is ignored?
9. If a flat plate with a circular hole is subjected to tensile force, then its theoretical stress concentration factor is?
10. For an elliptical hole on a flat plate, if width of the hole in direction of the load decrease, Stress Concentration Factor will______
11. Fatigue failure is time dependent failure.
12. If the mean stress value for a sinusoidal stress function is zero, then this type of stress falls in which category?
13. Stress Concentration Factor is the ratio of nominal stress obtained by elementary equations for minimum cross-section and highest value of actual stress near discontinuity.
14. The stress represented by cos (t) belongs to which category?
15. The stress represented by sin (t) + 1 belongs to which category?
16. There is sufficient plastic deformation prior to fatigue failure, which gives a warning well in advance.
17. The stress represented by sin (t) + 4 belongs to which category?