2. Assume that the axial loadP applied to the lap joint is distributed equally among the three 20-mm-diameter rivets. What is the maximum load P that can be applied if the allowable stresses are 40 MPa for shear in rivets, 90 MPa for bearing between a plate and a rivet, and 120 MPa for tension in the plates? 130 mm O O 25 mm 25 mm

Structural Analysis
6th Edition
ISBN:9781337630931
Author:KASSIMALI, Aslam.
Publisher:KASSIMALI, Aslam.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
icon
Related questions
Question

The compound bar containing steel, bronze, and aluminum segments

carries the axial loads shown in the figure. The properties of the

segments and the working stresses are listed in the table. Determine the

maximum allowable value of P if the change in length of the entire bar

is limited to 0.08 in. and the working stresses are not to be exceeded.

1:14 PM | 0.1KB/s & ©
84%
MODBO01 A1b.pdf
Bronze
Aluminum
Steel
A=400 mm2
A=600 mm
A=300 mm
2P
3P
4P
4m
2. Assume that the axial load P applied to the lap joint is distributed equally
among the three 20-mm-diameter rivets. What is the maximum load P
that can be applied if the allowable stresses are 40 MPa for shear in
rivets, 90 MPa for bearing between a plate and a rivet, and 120 MPa for
tension in the plates?
130 mm
O O O
25 mm
25 mm
3. The compound bar containing steel, bronze, and aluminum segments
carries the axial loads shown in the figure. The properties of the
segments and the working stresses are listed in the table. Determine the
maximum allowable value of P if the change in length of the entire bar
is limited to 0.08 in. and the working stresses are not to be exceeded.
A (in.²)
E (psi)
Ow (psi)
Steel
0.75
30 x 106
20000
Bronze
1.00
12 × 106
18000
Aluminum
0.50
10 x 106
12000
Steel
Bronze
Aluminum
4 ft
2 ft
3 ft
2P
ЗР
4P
Transcribed Image Text:1:14 PM | 0.1KB/s & © 84% MODBO01 A1b.pdf Bronze Aluminum Steel A=400 mm2 A=600 mm A=300 mm 2P 3P 4P 4m 2. Assume that the axial load P applied to the lap joint is distributed equally among the three 20-mm-diameter rivets. What is the maximum load P that can be applied if the allowable stresses are 40 MPa for shear in rivets, 90 MPa for bearing between a plate and a rivet, and 120 MPa for tension in the plates? 130 mm O O O 25 mm 25 mm 3. The compound bar containing steel, bronze, and aluminum segments carries the axial loads shown in the figure. The properties of the segments and the working stresses are listed in the table. Determine the maximum allowable value of P if the change in length of the entire bar is limited to 0.08 in. and the working stresses are not to be exceeded. A (in.²) E (psi) Ow (psi) Steel 0.75 30 x 106 20000 Bronze 1.00 12 × 106 18000 Aluminum 0.50 10 x 106 12000 Steel Bronze Aluminum 4 ft 2 ft 3 ft 2P ЗР 4P
Expert Solution
steps

Step by step

Solved in 4 steps with 6 images

Blurred answer
Knowledge Booster
Construction specifications
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, civil-engineering and related others by exploring similar questions and additional content below.
Similar questions
  • SEE MORE QUESTIONS
Recommended textbooks for you
Structural Analysis
Structural Analysis
Civil Engineering
ISBN:
9781337630931
Author:
KASSIMALI, Aslam.
Publisher:
Cengage,
Structural Analysis (10th Edition)
Structural Analysis (10th Edition)
Civil Engineering
ISBN:
9780134610672
Author:
Russell C. Hibbeler
Publisher:
PEARSON
Principles of Foundation Engineering (MindTap Cou…
Principles of Foundation Engineering (MindTap Cou…
Civil Engineering
ISBN:
9781337705028
Author:
Braja M. Das, Nagaratnam Sivakugan
Publisher:
Cengage Learning
Fundamentals of Structural Analysis
Fundamentals of Structural Analysis
Civil Engineering
ISBN:
9780073398006
Author:
Kenneth M. Leet Emeritus, Chia-Ming Uang, Joel Lanning
Publisher:
McGraw-Hill Education
Sustainable Energy
Sustainable Energy
Civil Engineering
ISBN:
9781337551663
Author:
DUNLAP, Richard A.
Publisher:
Cengage,
Traffic and Highway Engineering
Traffic and Highway Engineering
Civil Engineering
ISBN:
9781305156241
Author:
Garber, Nicholas J.
Publisher:
Cengage Learning