An extruded polymer beam is subjected to a bending moment M. The length of the beam is L = 500 mm. The cross-sectional dimensions of the beam are bị = 35 mm, d1 = 115 mm, b2 = 21 mm, d2 = 21 mm, and a = 7 mm. For this material, the allowable tensil bending stress is 15 MPa, and the allowable compressive bending stress is 14 MPa. Determine the largest moment M that can be applied as shown to the beam. b2 |ak a M. d2 d1 | A В z- L b1

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
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An extruded polymer beam is subjected to a bending moment M. The length of the beam is L = 500 mm. The cross-sectional
dimensions of the beam are b1 = 35 mm, d1 = 115 mm, b2 = 21 mm, d2 = 21 mm, and a = 7 mm. For this material, the allowable tensile
bending stress is 15 MPa, and the allowable compressive bending stress is 14 MPa. Determine the largest moment M that can be
applied as shown to the beam.
b2
a
M
d2
d1
A
B
L
b1
Answer:
M = i
N-m
Transcribed Image Text:An extruded polymer beam is subjected to a bending moment M. The length of the beam is L = 500 mm. The cross-sectional dimensions of the beam are b1 = 35 mm, d1 = 115 mm, b2 = 21 mm, d2 = 21 mm, and a = 7 mm. For this material, the allowable tensile bending stress is 15 MPa, and the allowable compressive bending stress is 14 MPa. Determine the largest moment M that can be applied as shown to the beam. b2 a M d2 d1 A B L b1 Answer: M = i N-m
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