The bracket shown is welded by an E70 electrodes fillet weld and is subjected to a factor .) Determine the polar moment of inertia of the group of welds. ) Determine the max force per mm to be resisted by the weld as shown. :) Determine the fillet weld size required for the connection. P = 290 kN 175 mm 150 mm Channel Section 500 mm
The bracket shown is welded by an E70 electrodes fillet weld and is subjected to a factor .) Determine the polar moment of inertia of the group of welds. ) Determine the max force per mm to be resisted by the weld as shown. :) Determine the fillet weld size required for the connection. P = 290 kN 175 mm 150 mm Channel Section 500 mm
Steel Design (Activate Learning with these NEW titles from Engineering!)
6th Edition
ISBN:9781337094740
Author:Segui, William T.
Publisher:Segui, William T.
Chapter8: Eccentric Connections
Section: Chapter Questions
Problem 8.4.13P
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![The bracket shown is welded by an E70 electrodes fillet weld and is subjected to a factored load Pu=290KN
a.) Determine the polar moment of inertia of the group of welds.
b.) Determine the max force per mm to be resisted by the weld as shown.
c.) Determine the fillet weld size required for the connection.
P = 290 kN
175 mm
150 mm
Channel
Section
500 mm
Welding at the back
of the channel](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F66aabb23-44f0-45ea-9699-fc6f56e08bd1%2Fd53b95b0-3d32-4994-ab0e-e34009d1df8a%2Fllu0878_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The bracket shown is welded by an E70 electrodes fillet weld and is subjected to a factored load Pu=290KN
a.) Determine the polar moment of inertia of the group of welds.
b.) Determine the max force per mm to be resisted by the weld as shown.
c.) Determine the fillet weld size required for the connection.
P = 290 kN
175 mm
150 mm
Channel
Section
500 mm
Welding at the back
of the channel
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