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Solved in 2 steps with 2 images
- Solve the preceding problem if F =90 mm, F = 42 kN, and t = 40°MPa3-103: A circular rod with a diameter of 10.0 mm has a groove cut to a diameter of 8.0 mm. A full radius of 1.20 mm is produced at the bottom of the groove. Compute the maximum stress in the rod when an axial tensile force of 5500 N is applied.In the figure, when the torture squeezes the material, the maximum force F in the clamping jaws is 1kN. Calculate the normal stress in the A-A section according to the given?
- 100 kN and 200 kN to the rectangular column in the figure Two forces act in intensity. A and B according to given on the stress element by finding the stresses at show.Find the stresss in the left rod after its lower end is attached to the support.Determine state of stress at the remaining points (P2, P3 and P4). Calculate the maximumprincipal (σ1) and maximum in-plane stress (τmax) for the remaining points (P2, P3 and P4) located at Point A.
- The element in the image has a horizontal force of 20 N and a vertical force of 25 N. The element was made of a 25.4 mm diameter steel bar. Determine:to. The four states of stress from the farthest place of the forces and obtain the critical point.b. For the critical point, construct the Mohr circle.C. Obtain the maximum principal and normal shear stresses for the critical point.d. The angles at which the maximum normal and shear stresses occur.and. Draw the rotated tension state for the angles obtained and with the corresponding tensions.The cylinder for a hydraulic press has an inside diameter of 300 mm and an outside radius of 260 mm. Find the maximum shear stress in the cylinder for an internal pressure of 221 MPa.5) Bars CE and DE in the truss have a cross-sectional area A = 25 cm2. Find the normal stress in each of these bars.
- Find normal and shearing stresses at point A .And construct the state of stress at AA pair of 1500 N.m magnitude is applied to the crank of an engine shown in the figure. Shown at position (a) the force P required for it (b) occurs in the uniform section BC arm of 40 mm2. determine the future average normal stressWhen sheer force acting on beam at F=60kN,find the sheer stress that occurs on the n-n section and indicate the distribution of the sheer stress