Situation 2: A steel rod is inserted into a wooden block as shown. Further, two cables (one on each end) are attached to the rod where it carries a bar with negligible weight. Determine the maximum allowable force P in Newtons based on the stress and strain parameters given below. Wooden Block: Shear strength capacity = 10 MPa Bearing strength capacity = 15 MPa Normal strength capacity = 40 MPa Steel Rod: Shear strength capacity = 15 MPa 40 mm 2500 mm

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
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Situation 2: A steel rod is inserted into a wooden block as shown. Further, two cables (one on each
end) are attached to the rod where it carries a bar with negligible weight. Determine the maximum
allowable force P in Newtons based on the stress and strain parameters given below.
Wooden Block:
Shear strength capacity = 10 MPa
Bearing strength capacity = 15 MPa
Normal strength capacity = 40 MPa
Steel Rod:
Shear strength capacity = 15 MPa
40 mm
2500 mm
100 mm
120 mm
'I
220 mm
12 mm dia.
Transcribed Image Text:Situation 2: A steel rod is inserted into a wooden block as shown. Further, two cables (one on each end) are attached to the rod where it carries a bar with negligible weight. Determine the maximum allowable force P in Newtons based on the stress and strain parameters given below. Wooden Block: Shear strength capacity = 10 MPa Bearing strength capacity = 15 MPa Normal strength capacity = 40 MPa Steel Rod: Shear strength capacity = 15 MPa 40 mm 2500 mm 100 mm 120 mm 'I 220 mm 12 mm dia.
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