Contact Problem Analyzer TED/CPA
Function of TED/CPA
@ @ @ @@@@@@   Contents @ @ @ @ @ @
@ 1. DRY contact pressure calculation using Half Space Assumption
@ 2. Calculation of Inner Stresses using Half Space Assumption
@ 3. Dry calculation by Elasto-Plastic FEM
@ 4. Rolling Contact calculation using Half Space Assumption
@ 5. Rolling contact calculation of deep groove ball bearing
@ 6. Rolling Contact calculation by Elasto-Plastic FEM
@ 7. Calculation of Elasto-Hydrodynamic Lubrication for Heavy Load
@ 8. Calculation of Elasto-Hydrodynamic Lubrication for Roller Bearing
@ 9. EHL calculation with dimples on the surface
 10. Unsteady EHL calculation of a disk that reciprocally moves
 11. Hydrodynamic calculation of Journal Bearing
 12. Hydrodynamic calculation of ‚olane ‚aearing
@ 6. Rolling Contact calculation by Elasto-Plastic FEM
ƒeƒLƒXƒg ƒ{ƒbƒNƒX: Here the transition of equivalent plastic strain (section Y=1) is shown. Step n indicates that the bodies are sequentially rotated in X 
direction by n elements.

It can be seen that the unevenness of the 
strain is remaining after 6 rotations.
ƒeƒLƒXƒg ƒ{ƒbƒNƒX: Here the transition of equivalent plastic strain (section X=0) is shown. Step n indicates that the bodies are sequentially rotated in X 
direction by n elements.
ƒeƒLƒXƒg ƒ{ƒbƒNƒX: Here the transition of equivalent plastic strain (section Z=0.5) is shown. Step n indicates that the bodies are sequentially rotated in X direction by n elements.

It can be seen that the unevenness of the 
strain is remaining after 6 rotations.