The elastic portion of the force-extension diagram for a specimen under uniaxial loading is shown in the figure. Specimen had an original diameter of 14mm and a gauge length of 50 mm. When the applied load on the specimen is 61.575 kN, the diameter is 13.9994mm. Determine Elastic Modulus and Poisson's ratio for the material of this specimen. F (kN) E= GPa 61.575 V= AL (mm) 0.1 What is modulus of toughness? Can it be calculated by using the given graphic above?

Structural Analysis
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Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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The elastic portion of the force-extension diagram for a specimen under uniaxial loading
is shown in the figure. Specimen had an original diameter of 14mm and a gauge length of 50 mm.
When the applied load on the specimen is 61.575 kN, the diameter is 13.9994mm. Determine
Elastic Modulus and Poisson's ratio for the material of this specimen.
F (kN)
E=
GPa
61.575
V=
AL (mm)
0.1
What is modulus of toughness? Can it be calculated by using the given graphic above?
Transcribed Image Text:The elastic portion of the force-extension diagram for a specimen under uniaxial loading is shown in the figure. Specimen had an original diameter of 14mm and a gauge length of 50 mm. When the applied load on the specimen is 61.575 kN, the diameter is 13.9994mm. Determine Elastic Modulus and Poisson's ratio for the material of this specimen. F (kN) E= GPa 61.575 V= AL (mm) 0.1 What is modulus of toughness? Can it be calculated by using the given graphic above?
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