The sample data from the Tensile test are shown in the table opposite. Strain, Stress, 1 Construct a stress-strain diagram in Excel sheet. 2. On the diagram, indicate three main stages: elastic...


The sample data from the Tensile test are shown in the table opposite.<br>Strain, Stress,<br>1 Construct a stress-strain diagram in Excel sheet.<br>2. On the diagram, indicate three main stages: elastic strain, plastic<br>strain and fracture.<br>mm/mm<br>MPa<br>0.0004<br>1.44<br>From the diagram:<br>0.0035<br>10.3<br>3. Find the ultimate tensile strength.<br>0.007<br>19.5<br>Rm=Omax<br>(MPa)<br>0.0103<br>28.0<br>0.0135<br>34.9<br>4. Calculate the maximum load (force) that can be sustained by a<br>specimen (the diameter of the specimen is 6 mm).<br>0.0172<br>42.3<br>0.0211<br>45.0<br>5. Find the proportional limit. (stress at the end of elastic part)<br>0.0251<br>45.3<br>R =<br>(MPa)<br>0.0298<br>49.0<br>0.0348<br>52.3<br>6. Find the elastic limit. (Stress at the starting point of the plastic part)<br>0.0399<br>54.1<br>Re=<br>(MPa)<br>0.0452<br>55.7<br>0.0504<br>57.0<br>7. From the diagram, find Young's Modulus (E)<br>0.056<br>58.0<br>0.0615<br>57.4<br>8. Find the yleld point.<br>0.067<br>57.0<br>(R.)<br>(MPa)<br>0.0728<br>56.2<br>9. Find the offset yield stress (at 0.002).<br>(MPa)<br>0.0786<br>55.8<br>0.0842<br>54.0<br>10. Find the modulus of resilience (U.).<br>

Extracted text: The sample data from the Tensile test are shown in the table opposite. Strain, Stress, 1 Construct a stress-strain diagram in Excel sheet. 2. On the diagram, indicate three main stages: elastic strain, plastic strain and fracture. mm/mm MPa 0.0004 1.44 From the diagram: 0.0035 10.3 3. Find the ultimate tensile strength. 0.007 19.5 Rm=Omax (MPa) 0.0103 28.0 0.0135 34.9 4. Calculate the maximum load (force) that can be sustained by a specimen (the diameter of the specimen is 6 mm). 0.0172 42.3 0.0211 45.0 5. Find the proportional limit. (stress at the end of elastic part) 0.0251 45.3 R = (MPa) 0.0298 49.0 0.0348 52.3 6. Find the elastic limit. (Stress at the starting point of the plastic part) 0.0399 54.1 Re= (MPa) 0.0452 55.7 0.0504 57.0 7. From the diagram, find Young's Modulus (E) 0.056 58.0 0.0615 57.4 8. Find the yleld point. 0.067 57.0 (R.) (MPa) 0.0728 56.2 9. Find the offset yield stress (at 0.002). (MPa) 0.0786 55.8 0.0842 54.0 10. Find the modulus of resilience (U.).
70<br>60<br>50<br>Fracture<br>40<br>30<br>20<br>10<br>0.01<br>0.02<br>0.03<br>0.04<br>0.05<br>0.06<br>0.07<br>0.08<br>0.09<br>Strain<br>Stress<br>

Extracted text: 70 60 50 Fracture 40 30 20 10 0.01 0.02 0.03 0.04 0.05 0.06 0.07 0.08 0.09 Strain Stress

Jun 11, 2022
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