Answer questions in reference to the figure below (use Specimen 2 for calculations). *Note that in this diagram strain is expressed as a percentage, in which the strain value multiplied by 100. Stress [MPa] 700 650 600 550 500 450 400 350 300 250 200 150 100 50 Specimen 1 Specimen 2 - Specimen 3 0 0.2 0.4 0.6 0.8 1 1.2 1.4 1.6 Strain [%] 1. Calculate the Elastic Modulus of this alloy. 2. Estimate the tensile strength. Explain the rationale behind your estimation. 3. Use the 0.002 strain offset method to determine the yield strength of this alloy. Draw this offset on the diagram so it is clear how you are determining the value.

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Chapter1: Chemical Foundations
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Answer questions in reference to the figure below (use Specimen 2 for calculations).
*Note that in this diagram strain is expressed as a percentage, in which the strain value
multiplied by 100.
Stress [MPa]
700
650
600
550
500
450
400
350
300
250
200
150
100
50
Specimen 1
Specimen 2
- Specimen 3
0
0.2
0.4
0.6
0.8
1
1.2
1.4
1.6
Strain [%]
1. Calculate the Elastic Modulus of this alloy.
2. Estimate the tensile strength. Explain the rationale behind your estimation.
3. Use the 0.002 strain offset method to determine the yield strength of this alloy. Draw this
offset on the diagram so it is clear how you are determining the value.
Transcribed Image Text:Answer questions in reference to the figure below (use Specimen 2 for calculations). *Note that in this diagram strain is expressed as a percentage, in which the strain value multiplied by 100. Stress [MPa] 700 650 600 550 500 450 400 350 300 250 200 150 100 50 Specimen 1 Specimen 2 - Specimen 3 0 0.2 0.4 0.6 0.8 1 1.2 1.4 1.6 Strain [%] 1. Calculate the Elastic Modulus of this alloy. 2. Estimate the tensile strength. Explain the rationale behind your estimation. 3. Use the 0.002 strain offset method to determine the yield strength of this alloy. Draw this offset on the diagram so it is clear how you are determining the value.
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