ROBLEM SET FOR SAMPAGUITA & DAISY GROUP: JAXIAL VARIABLE STRESS DESIGN BY THE LANGER-YIELD/MODIFIED ODMAN CRITERIA e variable bending stresses on an element are: Om = 30,000 psi o, = 000 psi. There is a stress raiser with stress concentration K, = 1.4. The terial has Su = 90 kpsi, S, = 70 kpsi , S̟ = 40 kpsi. Use S, = 76,950 psi. be done: Employing the LANGER-YIELD/ MODIFIED GOODMAN Criteria, Page 1 of 2 (a) Ascertain whether the the loading falls on Indefinite or Finite life Design. (b) If Finite life for the part, find the expected life of the part. In case of Indefinite life, find the Factor of Safety. (c) Plot the state of stress on the om - o, Coordinates.

Elements Of Electromagnetics
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PROBLEM SET FOR SAMPAGUITA & DAISY GROUP:
UNIAXIAL VARIABLE STRESS DESIGN BY THE LANGER-YIELD/MODIFIED
GOODMAN CRITERIA
The variable bending stresses on an element are: Om = 30,000 psi o, =
25,000 psi. There is a stress raiser with stress concentration K, = 1.4. The
material has S = 90 kpsi, S, = 70 kpsi , Se = 40 kpsi. Use S, = 76,950 psi.
To be done: Employing the LANGER-YIELD/ MODIFIED GOODMAN Criteria,
Page 1 of 2
(a) Ascertain whether the the loading falls on Indefinite or Finite life
Design.
(b) If Finite life for the part, find the expected life of the part. In case
of Indefinite life, find the Factor of Safety.
(c)
Plot the state of stress on the om
O, coordinates.
Transcribed Image Text:PROBLEM SET FOR SAMPAGUITA & DAISY GROUP: UNIAXIAL VARIABLE STRESS DESIGN BY THE LANGER-YIELD/MODIFIED GOODMAN CRITERIA The variable bending stresses on an element are: Om = 30,000 psi o, = 25,000 psi. There is a stress raiser with stress concentration K, = 1.4. The material has S = 90 kpsi, S, = 70 kpsi , Se = 40 kpsi. Use S, = 76,950 psi. To be done: Employing the LANGER-YIELD/ MODIFIED GOODMAN Criteria, Page 1 of 2 (a) Ascertain whether the the loading falls on Indefinite or Finite life Design. (b) If Finite life for the part, find the expected life of the part. In case of Indefinite life, find the Factor of Safety. (c) Plot the state of stress on the om O, coordinates.
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