For the beam and loading shown, use the double-integration method to determine (a) the equation of the elastic curve for
Posted: Mon May 09, 2022 9:34 am
For the beam and loading shown, use the double-integration
method to determine (a) the equation of the elastic curve for the
cantilever beam AB, (b) the deflection at the free end, and (c) the
slope at the free end. Assume that EI is
constant for the beam. Let w0 = 12 kN/m,
L = 5.0 m, E = 225 GPa, and I = 150 x
106 mm4
For the beam and loading shown, use the double-integration method to determine (a) the equation of the elastic curve for the cantilever beam AB, (b) the deflection at the free end, and (c) the slope at the free end. Assume that El is constant for the beam. Let wo = 12 kN/m, L = 5.0 m, E = 225 GPa, and I = 150 x 106 mm4. WA B Answer: (b) VB = - 11.112 mm (c) = -0.0027 rad
method to determine (a) the equation of the elastic curve for the
cantilever beam AB, (b) the deflection at the free end, and (c) the
slope at the free end. Assume that EI is
constant for the beam. Let w0 = 12 kN/m,
L = 5.0 m, E = 225 GPa, and I = 150 x
106 mm4
For the beam and loading shown, use the double-integration method to determine (a) the equation of the elastic curve for the cantilever beam AB, (b) the deflection at the free end, and (c) the slope at the free end. Assume that El is constant for the beam. Let wo = 12 kN/m, L = 5.0 m, E = 225 GPa, and I = 150 x 106 mm4. WA B Answer: (b) VB = - 11.112 mm (c) = -0.0027 rad