Find the value of maximunm principal stress Maximum shear stress-40 MPa Minimum principal stress=20 MPa
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- For the state of plane stress shown below. 74. Determine the largest value of σy for which the maximum in-plane shearing stress is equal to 75 MPa. Determine the corresponding principal stresses.a)Calculate the stress components acting on the inclined plane AB. b)Calculate prime stresses c)Calculate the maximum shear stress Shear stress = 60 MpaDetermine maximum shear stress and maximum principal stress
- Answer the questions given the following stresses: a) The value of the minimum principal stress b) The value of the maximum principal stress c) The value of the angle resulting to zero shear stress isThe stress condition of an I-section beam at point A is given. (It is 30 MPA shear stress value.) a) Calculate the principal stresses, location and angle. b) Calculate the stress components that will affect the plane in a section a-a that makes a 30 degree angle shown in the figure.use mhors circle a.What is the value of the minimum stress in psf? b.What is the value of the normal stress acting at the plane AB in psf? c.What is the value of the shear stress acting at the plane AB in psf?
- Q) If the failure of shearing stress in a steel plate is 2,300KN, determine (a) the force required to punch a 32 mm diameter hole in a 10mm thick plate and, (b) the corresponding normal stress ina punch. Explain it correctlyThe major principal stress and deviator stress at a point are 100 kPa and 60 kPa, respectively. Indicate the magnitude of the minor principal stress. What is the value of the maximum shear stress and of the normal stress acting on the same plane? (Deviator stress is the algebraic difference between the values for the principal stresses.)Determine the average normal stress developed ont he cross section.
- A steel bar 50 mm diameter and 1 m long just fits within a rigid hole carries a compressive load of 300 kN. Consider E= 200 GPa for steel and Poissons ratio υ = 1/4. Determine: (a.)Stress developed along lateral direction in MPa. (b.) Stress developed along lateral direction in MPa if the rigid hole has a diameter of 51 mm.Determine: a) max shear stressb) max compressive stressc) max tensile stressSolve this early all subparts B) determine the principal plane (for σmax) in radians. C) Determine the shearing stress in a plane, which is 330 with the vertical (clockwise). D) determine the normal stress (in MPa) in a plane, which is 330 with the vertical (clockwise). E) determine the minimum values of θ (in radians) for which the normal stress is the equal to or less than 35.2 MPa.