Fabi0
Mechanical
- Apr 25, 2010
- 71
Hi
i'm working with the simulation of a back up roller bearing: the load had a nominal value and a max value:
Nominal = 205KN
Max= 650KN
The material has been characterized in elastic and plastic behaviour (Elastic-->E,poisson; Plastic-->isotropic, with 4 point of stress-strain curve).
I need to investigate phenom like ratcheting in the inner ring, so i need to undestand where material go over yield stress and how much.
The model has 4 static step (i believe static it's right, by reading abaqus documentation):
1- i get contact applying gravity to outer ring
2- i apply a small portion of nominal load and shut down the gravity
3- nominal load
4- max load
After a lot of singularity problems (i have a lot of contact even if i've used simmetry) solved by use of CONTACT CONTROL, AUTOMATIC TOLERANCE and DAMPING FACTOR over the whole model (not CONTACT CONTROL, AUTOMATIC STABILIZATION), now i'm dealing with another problem:
***WARNING: THE STRAIN INCREMENT HAS EXCEEDED FIFTY TIMES THE STRAIN TO CAUSE FIRST YIELD AT 65 POINTS
***WARNING: EXCESSIVE DISTORTION AT A TOTAL OF 97 INTEGRATION POINTS IN SOLID (CONTINUUM) ELEMENTS
***NOTE: ELEMENTS ARE DISTORTING EXCESSIVELY. CONVERGENCE IS JUDGED UNLIKELY.
***NOTE: SEVERE CONTACT OVERCLOSURES EXIST. CONVERGENCE IS JUDGED UNLIKELY.
It'e my first analysis that take in plasticity, so i'm completely out of ideas about how solve this problem.
Maybe i need to use Kinematic in Plastic definition of material?
Should i use less coarse mesh? (but contact work right, in elastic behaviour)
I've read about remeshing, but my mesh uses HEX element, so no remeshing...
Fabi0
i'm working with the simulation of a back up roller bearing: the load had a nominal value and a max value:
Nominal = 205KN
Max= 650KN
The material has been characterized in elastic and plastic behaviour (Elastic-->E,poisson; Plastic-->isotropic, with 4 point of stress-strain curve).
I need to investigate phenom like ratcheting in the inner ring, so i need to undestand where material go over yield stress and how much.
The model has 4 static step (i believe static it's right, by reading abaqus documentation):
1- i get contact applying gravity to outer ring
2- i apply a small portion of nominal load and shut down the gravity
3- nominal load
4- max load
After a lot of singularity problems (i have a lot of contact even if i've used simmetry) solved by use of CONTACT CONTROL, AUTOMATIC TOLERANCE and DAMPING FACTOR over the whole model (not CONTACT CONTROL, AUTOMATIC STABILIZATION), now i'm dealing with another problem:
***WARNING: THE STRAIN INCREMENT HAS EXCEEDED FIFTY TIMES THE STRAIN TO CAUSE FIRST YIELD AT 65 POINTS
***WARNING: EXCESSIVE DISTORTION AT A TOTAL OF 97 INTEGRATION POINTS IN SOLID (CONTINUUM) ELEMENTS
***NOTE: ELEMENTS ARE DISTORTING EXCESSIVELY. CONVERGENCE IS JUDGED UNLIKELY.
***NOTE: SEVERE CONTACT OVERCLOSURES EXIST. CONVERGENCE IS JUDGED UNLIKELY.
It'e my first analysis that take in plasticity, so i'm completely out of ideas about how solve this problem.
Maybe i need to use Kinematic in Plastic definition of material?
Should i use less coarse mesh? (but contact work right, in elastic behaviour)
I've read about remeshing, but my mesh uses HEX element, so no remeshing...
Fabi0