The lap joint is fastened with four 3/4-inch diameter rivets. ➤a. If the allowable shearing stress of the rivets is 14 ksi (kips per square inch), find the value of P (kips) that maybe applied to the joint. Assume that the load is equally distributed among the rivets. ➤b. if the allowable bearing stress for the plates is 18 ksi, find the value of the load P (kips) that maybe applied to the joint. Assume that the load is equally distributed among the rivets. ➤c. what is the maximum value of the load P (kips) that can be applied to the joint? 78 1 4 in. in.
The lap joint is fastened with four 3/4-inch diameter rivets. ➤a. If the allowable shearing stress of the rivets is 14 ksi (kips per square inch), find the value of P (kips) that maybe applied to the joint. Assume that the load is equally distributed among the rivets. ➤b. if the allowable bearing stress for the plates is 18 ksi, find the value of the load P (kips) that maybe applied to the joint. Assume that the load is equally distributed among the rivets. ➤c. what is the maximum value of the load P (kips) that can be applied to the joint? 78 1 4 in. in.
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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Question
The lap joint is fastened with four ¾-inch diameter rivets.
➢ a. If the allowable shearing stress of the rivets is 14 ksi (kips per square inch), find the value of P (kips) that maybe applied to the joint. Assume that the load is equally distributed among the rivets.
➢ b. if the allowable bearing stress for the plates is 18 ksi, find the value of the load P (kips) that maybe applied to the joint. Assume that the load is equally distributed among the rivets.
➢ c. what is the maximum value of the load P (kips) that can be applied to the joint?
![Problem 1:
Axial loads are applied to the compound rod that is
composed of an aluminum segment rigidly connected
between steel and bronze segments. P = 10 kN
a. What is the stress (MPa) in the Bronze material?
b. What is the stress in Aluminum in MPa?
c. What is the stress in Steel in MPa?
2P
Bronze
A=400 mm²
Aluminum
A=600mm²
4P
-5 m
Steel
A=300mm²
4 m.
Problem 2:
The lap joint is fastened with four 3/4-inch diameter rivets.
a. If the allowable shearing stress of the rivets is 14
ksi (kips per square inch), find the value of P (kips)
that maybe applied to the joint. Assume that the load
is equally distributed among the rivets.
➤ b. if the allowable bearing stress for the plates is 18
ksi, find the value of the load P (kips) that maybe
applied to the joint. Assume that the load is equally
distributed among the rivets.
> c. what is the maximum value of the load P (kips) that
can be applied to the joint?
4 in.
3P
1in.
Problem 3:
For the joint shown:
a. calculate the largest bearing stress (MPa) between
the pin and the members.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F82937c8d-8ab9-49a9-bcea-ba0dfa91e617%2F2320d3d4-523c-42cd-9a99-81e7e3104a1f%2Fefkjrq_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Problem 1:
Axial loads are applied to the compound rod that is
composed of an aluminum segment rigidly connected
between steel and bronze segments. P = 10 kN
a. What is the stress (MPa) in the Bronze material?
b. What is the stress in Aluminum in MPa?
c. What is the stress in Steel in MPa?
2P
Bronze
A=400 mm²
Aluminum
A=600mm²
4P
-5 m
Steel
A=300mm²
4 m.
Problem 2:
The lap joint is fastened with four 3/4-inch diameter rivets.
a. If the allowable shearing stress of the rivets is 14
ksi (kips per square inch), find the value of P (kips)
that maybe applied to the joint. Assume that the load
is equally distributed among the rivets.
➤ b. if the allowable bearing stress for the plates is 18
ksi, find the value of the load P (kips) that maybe
applied to the joint. Assume that the load is equally
distributed among the rivets.
> c. what is the maximum value of the load P (kips) that
can be applied to the joint?
4 in.
3P
1in.
Problem 3:
For the joint shown:
a. calculate the largest bearing stress (MPa) between
the pin and the members.
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