The assembly shown in Fig. P5.39 consists of a solid aluminum alloy [E = 70 GPa] post (2) surrounded by a bronze [E = 100 GPa] tube (1). Before the load P is applied, there is a clearance of 2 mm between the post and the tube. The yield stress for the aluminum post is 260 MPa and the yield stress for the bronze tube is 340 MPa. 600 mm 2 mm B %3D - 35 mm 15 mm (1) 29 mm Determine: (a) the maximum load P that may be applied to the assembly without causing yielding of either the post or the tube. (b) the downward displacement of rigid cap B. (c) the normal strain in the bronze tube. (2) A

Materials Science And Engineering Properties
1st Edition
ISBN:9781111988609
Author:Charles Gilmore
Publisher:Charles Gilmore
Chapter6: Introduction To Mechanical Properties
Section: Chapter Questions
Problem 6.1DP
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The assembly shown in Fig. P5.39 consists of
a solid aluminum alloy [E = 70 GPa] post (2)
surrounded by a bronze [E = 100 GPa] tube (1).
Before the load P is applied, there is a clearance of
2 mm between the post and the tube. The yield
stress for the aluminum post is 260 MPa and the
yield stress for the bronze tube is 340 MPa. 600 mm
2 mm
B
35 mm
15 mm
29 mm
(1)
Determine:
(1)
(a) the maximum load P that may be applied to the
assembly without causing yielding of either the
post or the tube.
(b) the downward displacement of rigid cap B.
(c) the normal strain in the bronze tube.
(2)
Transcribed Image Text:The assembly shown in Fig. P5.39 consists of a solid aluminum alloy [E = 70 GPa] post (2) surrounded by a bronze [E = 100 GPa] tube (1). Before the load P is applied, there is a clearance of 2 mm between the post and the tube. The yield stress for the aluminum post is 260 MPa and the yield stress for the bronze tube is 340 MPa. 600 mm 2 mm B 35 mm 15 mm 29 mm (1) Determine: (1) (a) the maximum load P that may be applied to the assembly without causing yielding of either the post or the tube. (b) the downward displacement of rigid cap B. (c) the normal strain in the bronze tube. (2)
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