The gross weight of a sixwheel truck and its load is 42000 lbs. The front axle A carries 7000 lbs., the forward axle B of the rear axle group carries 17500 lbs. Center distances are; (A to B = 16ft., B to C= 4ft.). Determine: a. the maximum bending moment, b. the maximum shear load, c. the moment of inertia and d. the flexural stresses in the lower and upper fiber of the beam. A в I-26ft

Structural Analysis
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Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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(Mechanies of Deformable Bodies)
The gross weight of a sixwheel truck and its load is 42000 lbs. The front axle A carries 7000 Ibs., the forward
axle B of the rear axle group carries 17500 lbs. Center distances are; (A to B = 16ft., B to C= 4ft.). Determine:
a. the maximum bending moment,
b. the maximum shear load,
c. the moment of inertia and
d. the flexural stresses in the lower and upper fiber of the beum.
A
B
L=26ft
R1
R2
800mm
150mm
750mm
200 mm
Cross-section of Beam
Transcribed Image Text:(Mechanies of Deformable Bodies) The gross weight of a sixwheel truck and its load is 42000 lbs. The front axle A carries 7000 Ibs., the forward axle B of the rear axle group carries 17500 lbs. Center distances are; (A to B = 16ft., B to C= 4ft.). Determine: a. the maximum bending moment, b. the maximum shear load, c. the moment of inertia and d. the flexural stresses in the lower and upper fiber of the beum. A B L=26ft R1 R2 800mm 150mm 750mm 200 mm Cross-section of Beam
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