An extruded polymer beam is subjected to a bending moment M. The length of the bear is L = 500 mm. The cross-sectional dimensions of the bearn are b₁ = 39 mm, d₁ = 95 mm, b₂ = 23 mm, d₂ = 23 mm, and a = 8 mm. For this material, the allowable tensile bending stress is 18 MPa, and the allowable compressive bending stress is 9 MPa. Determine the largest moment M that can be applied as shown to the beam. M A Answer: M = L B N-m ↓ a d₂ b₂ ➡AK yak b₁

Structural Analysis
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Chapter2: Loads On Structures
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An extruded polymer bear is subjected to a bending moment M. The length of the bear is L = 500 mm. The cross-sectional dimensions
of the bear are b₁ = 39 mm, d₁ = 95 mm, b₂ = 23 mm, d₂ = 23 mm, and a = 8 mm. For this material, the allowable tensile bending stress is
18 MPa, and the allowable compressive bending stress is 9 MPa. Determine the largest moment M that can be applied as shown to the
beam.
M
A
Answer:
M =
L
B
N-m
↓
a
d₂
➡AK
b₂
b₁
yak
Transcribed Image Text:An extruded polymer bear is subjected to a bending moment M. The length of the bear is L = 500 mm. The cross-sectional dimensions of the bear are b₁ = 39 mm, d₁ = 95 mm, b₂ = 23 mm, d₂ = 23 mm, and a = 8 mm. For this material, the allowable tensile bending stress is 18 MPa, and the allowable compressive bending stress is 9 MPa. Determine the largest moment M that can be applied as shown to the beam. M A Answer: M = L B N-m ↓ a d₂ ➡AK b₂ b₁ yak
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