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STATIC STRUCTURAL ANALYSIS ON RAILWHEEL OBJECTIVES To Perform a static structural analysis on the Rail wheel and Track setup Case 1: Multiply the bearing load by 5 times and compare the results with the load of 100000 N (As done in week 2 video).…
ARAVIND M
updated on 16 Aug 2020
STATIC STRUCTURAL ANALYSIS ON RAILWHEEL
OBJECTIVES
To Perform a static structural analysis on the Rail wheel and Track setup
Case 1: Multiply the bearing load by 5 times and compare the results with the load of 100000 N (As done in week 2 video). Compare the Total Deformation, Equivalent stress and the life under both the loads
Case 2: Implement a User defined result and calculate the Total Deformation from this result and check if it is the same as that obtained by the inbuilt result by ANSYS for a load of 100000 N.
PROCEDURE
RESULTS
Case1
Total deformation
Equivalent stress
Equivalent strain
Pressure
User Define
Case2
Total deformation
Equivalent stress
Equivalent strain
Pressure
User Define
CONCLUSION
Total deformation (mm) | Max Equivalent stress (MPa) | Max Equivalent strain | contact pressure at rail (MPa) | contact pressure at bearing (MPa) | |
Case1 1e+5N | 999.09 | 84.49 | 5.5e-4 | 176.87 | 7.599 |
Case2 5e+5KN | 999.14 | 349.09 | 22.2e-4 | 599.94 | 35.322 |
As the table denote that the stress, strain and contact pressure is more in case2 because the bearing load is 5 times more than the case 1.
but by the life the material assign is suitable for both the load cases.
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