3 D A glue-laminated timber beam is reinforced by carbon fiber reinforced plastic (CFRP) material bonded to its bottom surface. The cross section of the composite beam is shown in figure below. The elastic modulus of the wood is E= 12 GPa and the elastic modulus of the CFRP is 112 GPa. The simply supported beam spans L = 6 m and carries a concentrated load P= 3.9 kN at midspan, see figure below. L/2 Answer: 9.3333 B L/2 C If b₁ = 89 mm and b₂ = 39 mm determine: a) the modular ratio n. Enter your answer to 4 decimal places. CFRP b₁ y b2 250 mm 3 mm

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter6: Stresses In Beams (advanced Topics)
Section: Chapter Questions
Problem 6.2.16P: A wood beam in a historic theater is reinforced with two angle sections at the outside lower corners...
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A glue-laminated timber beam is reinforced by carbon fiber reinforced plastic (CFRP) material
bonded to its bottom surface. The cross section of the composite beam is shown in figure
below. The elastic modulus of the wood is E= 12 GPa and the elastic modulus of the CFRP is 112
GPa. The simply supported beam spans L = 6 m and carries a concentrated load P= 3.9 kN at
midspan, see figure below.
A
L/2
Answer: 9.3333
P
B
L/2
C
If b₁ = 89 mm and b₂ = 39 mm determine:
a) the modular ratio n. Enter your answer to 4 decimal places.
N
CFRP
b₁
y
F
b2
250 mm
3 mm
Transcribed Image Text:A glue-laminated timber beam is reinforced by carbon fiber reinforced plastic (CFRP) material bonded to its bottom surface. The cross section of the composite beam is shown in figure below. The elastic modulus of the wood is E= 12 GPa and the elastic modulus of the CFRP is 112 GPa. The simply supported beam spans L = 6 m and carries a concentrated load P= 3.9 kN at midspan, see figure below. A L/2 Answer: 9.3333 P B L/2 C If b₁ = 89 mm and b₂ = 39 mm determine: a) the modular ratio n. Enter your answer to 4 decimal places. N CFRP b₁ y F b2 250 mm 3 mm
g) the maximum bending stress in timber. Enter your answer in MPa to 2 decimal places.
Answer:
Check
Transcribed Image Text:g) the maximum bending stress in timber. Enter your answer in MPa to 2 decimal places. Answer: Check
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