5. A rectangular aluminum block is 90 mm long in the X-direction, 70 mm wide in the Y-direction, and 40 mm thick in the Z-direction. The block is subjected to axial loads of 220 kN tensile force in the X direction, 150 kN compressive force in the Y direction, and 200 kN tensile force in the Z-direction. Assume that v = 0.33 and E = 70 GPa. Determine the single load in the X-direction that would produce the same Z deformation as the original loading.
5. A rectangular aluminum block is 90 mm long in the X-direction, 70 mm wide in the Y-direction, and 40 mm thick in the Z-direction. The block is subjected to axial loads of 220 kN tensile force in the X direction, 150 kN compressive force in the Y direction, and 200 kN tensile force in the Z-direction. Assume that v = 0.33 and E = 70 GPa. Determine the single load in the X-direction that would produce the same Z deformation as the original loading.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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![5. A rectangular aluminum block is 90 mm long in the X-direction, 70 mm wide in the Y-direction, and 40
mm thick in the Z-direction. The block is subjected to axial loads of 220 kN tensile force in the X
direction, 150 kN compressive force in the Y direction, and 200 kN tensile force in the Z-direction.
Assume that v = 0.33 and E = 70 GPa. Determine the single load in the X-direction that would produce
the same Z deformation as the original loading.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ff70bb2e2-5255-4bad-9273-c16c6350f24a%2F5fb5e59b-0316-4532-ad2e-dc72791e3ed8%2F0qychck_processed.png&w=3840&q=75)
Transcribed Image Text:5. A rectangular aluminum block is 90 mm long in the X-direction, 70 mm wide in the Y-direction, and 40
mm thick in the Z-direction. The block is subjected to axial loads of 220 kN tensile force in the X
direction, 150 kN compressive force in the Y direction, and 200 kN tensile force in the Z-direction.
Assume that v = 0.33 and E = 70 GPa. Determine the single load in the X-direction that would produce
the same Z deformation as the original loading.
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