6. In the clevis shown, the bolt diameter is 25 mm and the thickness of each yoke is 8 mm, determine the maximum amount of load P that it can carry without exceeding a shearing stress of 60 MPa and a bearing stress of 120 MPa. P
6. In the clevis shown, the bolt diameter is 25 mm and the thickness of each yoke is 8 mm, determine the maximum amount of load P that it can carry without exceeding a shearing stress of 60 MPa and a bearing stress of 120 MPa. P
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Answer number 6 only

Transcribed Image Text:4. Compute the maximum force P that can be applied
by the machine operator, if the shearing stress in the
as
ns
pin at C and the axial stress in the control rod AB are
ea
limited to 28 MPa and 35 MPa, respectively. The
ch
diameters are 0.65 cm for the pin, and 1.25 cm for
the control rod. Assume single shear for the pin at B.
75mm
9mm
-300mm
B
125mm
C
D
5mm
be
5. The lap joint shown is fastened by two %-in.-
er
diameter rivets. Calculate the maximum safe load P
nal
that can be applied if the shearing stress in the rivets
is limited to 14 ksi and the bearing stress in the plates
is limited to 18 ksi. Assume the applied load is
uniformly distributed among the two rivets.
4 in
7/8 in
7/8 in
6. In the clevis shown, the bolt diameter is 25 mm and
the thickness of each yoke is 8 mm, determine the
ed
nt
lie
maximum amount of load P that it can carry without
exceeding a shearing stress of 60 MPa and a bearing
9=
stress of 120 MPa.
ESS
he
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