Problem 1. The composite beam shown below carries a cantilevered load of 10 kN. The beam consists of one 30 x 124 mm plate and four 12 x 50 mm plates. They are pinned together at 120 mm intervals with round pins. The pin material has a shear strength of 159 MPa. Compute the minimum acceptable diameter for the pins. O O O O O O O O O 1000 mm O O O O -120 mm (typ) 0 0 O O P = 10 KN 30 x 124 mm -12 x 50 mm (typ)

Materials Science And Engineering Properties
1st Edition
ISBN:9781111988609
Author:Charles Gilmore
Publisher:Charles Gilmore
Chapter12: Composite Materials
Section: Chapter Questions
Problem 12.7P: Estimate the transverse tensile strength of the concrete in Problem 12.6.
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Problem 1.
The composite beam shown below carries a cantilevered load of 10 kN. The beam consists of one
30 x 124 mm plate and four 12 x 50 mm plates. They are pinned together at 120 mm intervals with
round pins. The pin material has a shear strength of 159 MPa. Compute the minimum acceptable
diameter for the pins.
O
O
O
O
O
O
O
-0
O
0-
O
1000 mm
Do O
-120 mm (typ)
O
O
O
P = 10 KN
30 x 124 mm
12 x 50 mm (typ)
Transcribed Image Text:Problem 1. The composite beam shown below carries a cantilevered load of 10 kN. The beam consists of one 30 x 124 mm plate and four 12 x 50 mm plates. They are pinned together at 120 mm intervals with round pins. The pin material has a shear strength of 159 MPa. Compute the minimum acceptable diameter for the pins. O O O O O O O -0 O 0- O 1000 mm Do O -120 mm (typ) O O O P = 10 KN 30 x 124 mm 12 x 50 mm (typ)
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