The state of stress at a point is given by ox = -6 MPa, ơy = 4 MPa, and Txy = -8 MPa. The maximum tensile stress (in MPa) at the point is
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- The state of stress at a point under plane stress 40 MPa, Oyy condition is Ox = = 100 MPa and Txy 40 MPa. This radius the Mohr's circle representing the given state of stress in MPa is:The state of stress at a point in a machine component is given by ox = 120 MPa, oy = 55 MPa, Oz = -85 MPa, Oxy = -55 MPa, Oxz = -75 MPa, and oyz = 33 MPa. Construct the Mohr's circles of stress for this stress state and find the maximum shear stress.Q2- Show the stress components of a point in plane stress on the square in Figures below: Ty = 18 ksi Oy = 85 ksi (T) = 27 ksi (C) Oxx 1- 18 ksi %3D = 100 MPa (T) =-75 MPa 2- = -75 MPa = 85 MPa (T)
- Find stress and of each segment and find displacement of each segmentTDe tuláaiceicilaal, D. ile e 200e ticioddocidcICIdCies he sim Ang 2. Fin sile wrl imd tlaeide hrety- 5. JAns. 3 mm) 3. Find the thickness of a cast iron cylinder 250 mm in diameter to carry a pressure of 0.7 N/mm2. Take JAns. 6.25 mm] maximum tensile stress for cast iron as 14 MPa. fIm and is to be subiected to an internal pressure of 2.75Formül: TL 2 5 için e- C-;(1-0,630b/a) T 60 MPa Find the approximate prime plane in degrees for the state of stress given in the figure. Tmaks Gab Czab'G' 45 MPa M,(Izy.z=Iy.y) + M,4.z – lzy-y) 4.ly - Izy ds + Oy, tan20, 2 vQ My It 2tA 100 MPa 100MPA cos20 + Tgysin20 , Jert 2 sin20 + Trycos20 , Omaks.min = 2. 45 MPa 60 MPa Tmaks - 66 55 44 33 22 O O
- The state of plane stress at a point is represented by the element shown in the figure. Oy o, = 200 Mpa oy = 450 Mpa Txy Try 3D200 Мра Click here to see all formulas Ox Part A - Determine the maximum principal stress in Mpa. O 253 О 355 O 507 O 760 O 608 Submit Request Answer O O O O OThe state of stress at a point in a component is ox = -14 ksi, oy = -20 ksi, Txy-4 ksi. Sketch the state of stress at the point in x-y and the calculate the principal stresses and the magnitude of the maximum shear stress. OA = ksi OB ksi Magnitide of tmax ksi %Dthe state of stress at a point can be described by óx=36 MPa and Txy= 17MPa a second coordinate system is rotated by theta35 degrees What is the normal stress in the direction of the x' axis what is the shear stress in the y'-direction for the faces with a normal in the x'-direction what is the normal stress in the direction of the y'-axis
- In a stressed element, the value of normal stress along 'X' and 'Y' directions are 200 MPa (tensile) and 100 MPa (compressive) respectively and no shear stress is acting on the plane. Find the Normal stress, if the position of principal plane is 0° to major axis. The normal stress in MPa =In a stressed element, the value of normal stress along 'X' and 'Y' directions are 100 MPa (tensile) and 50 MPa (tensile) respectively and no shear stress is acting on the plane. Find the Normal stress, if the position of principal plane is 0 to major axis. The normal stress in MPa =Q1. A crane hook has a triangular section at x-x as shown in Fig. Find the maximum stress at point P. 5 kN 60 0: 40 20 An dimiencions in mm