A bracket shown in the figure 6.9 carries an eccentric load of 30 kN at an eccentricity of 200 mm. Diameter of bolts is 20 mm . Use the reduced eccentricity method of analysis.
A bracket shown in the figure 6.9 carries an eccentric load of 30 kN at an eccentricity of 200 mm. Diameter of bolts is 20 mm . Use the reduced eccentricity method of analysis.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Subject: Steel design- Bolted Steel Connection - Bolted Subjected to Eccentric Loads
*Use NSCP 2015 formula/guide to solve this problem
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![6.9 Problem:
A bracket shown in the figure 6.9 carries an eccentric load of 30 kN at an eccentricity
of 200 mm. Diameter of bolts is 20 mm ø. Use the reduced eccentricity method of
analysis
1 Compute the shearing stress of
bolt A.
Compute the shearing stress of
bolt B.
(2
3
Compute the shearing stress of
bolt C.
75
75
O
60 60
200 mm
30 kN
20 mm o bolts](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F8bd14e05-ccbf-4d19-81d0-69a83645678b%2F830c152d-cf8b-4ba1-8b8f-cb90ab5288be%2Fuf1xn3_processed.jpeg&w=3840&q=75)
Transcribed Image Text:6.9 Problem:
A bracket shown in the figure 6.9 carries an eccentric load of 30 kN at an eccentricity
of 200 mm. Diameter of bolts is 20 mm ø. Use the reduced eccentricity method of
analysis
1 Compute the shearing stress of
bolt A.
Compute the shearing stress of
bolt B.
(2
3
Compute the shearing stress of
bolt C.
75
75
O
60 60
200 mm
30 kN
20 mm o bolts
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