if the normal stress in x direction is 14 Ksi and the normal stress in the y direction is 9 Ksi and minimum principal strešs is 5 Ksi find shear stress
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- 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?Determine the average normal stress developed ont he cross section.Determine the value of maximum principal stress
- Determine the principal stress and maximum shear 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.At a point in a stressed material, the major principal stress is 66 kPa compression and the minor principal stress is 34 kPa tension. (a) Use the Mohr’s circle to determine the shear and normal stress on a plane 45° ccw from the major principal plane. (b) Determine the stress combination acting on the plane 75° ccw from the major principal plane.
- Compute the principal stress. Determine maximum shear stressSolve alll subparts b, c, d and e 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.For the given state of stress, determine (a) the orientation () of the planes with themaximum shear stress, (b) the value of the maximum shear stress, and (c) the correspondingnormal stress on these planes.
- Consider a stress element inclined at 35 degree's counter-clock wise from the positive x axis. The element is subjected to normal stresses in x' and y' direction having a magnitude of 88 and 528 respectively. Using the Mohr circle approach find out the stresses inclined at 0 degree. Also find out the maximum shear stress and shear plane. Consider the unit of stresses in MPa. *At a point in a stressed material, the major principal stress is 50 kPa compression and the minor principal stress is 20 kPa compression. Use Equations 1 and 2 to determine the maximum shear stress that acts through the point and the normal stress on the plane of this maximum shear.At a point, the normal and shear stresses acting on one plane are 8,000 psf compression and 2,000 psf, respectively. On a perpendicular plane, the normal and shear stresses are 2,000 psf compression and 2,000 psf, respectively. (a) Draw the Mohr’s circle. (b) Determine the value of the principal stresses. (c) Find the angle between the plane on which the 8,000 psi compressive stress acts and the major principal plane. (d) What is the maximum shear stress acting at the point?