farzad1
Mechanical
- Jun 18, 2007
- 9
hello friends
i am doing an stress linearization in a perforated region of a connection of shell to tubesheet.
i have read the similar threads but it did not exactly solve my problem.
i want to discuss numerically.
my problem is that the stress i see as a total von mises , )not by stress linearization) is 218 Mpa .
1- i have to mention that tubesheet yield is 218 Mpa and the shell is 250. in stress analysis i see maximum stress of 218.2 around transition area and a small plastic deformation. but when i choose my SCL for stress linearization in the region (both in tube sheet or head or exactly on material transition line ) the maximum amount of membrane+ bending is 260 MPA !!!
my question is that between the amounts 218.2 which is total and 260 , which is Pm(or Pl) + Pb + Q ? and why the membrane plus bending which is part of total stress has exceeded than 218.2 which is the total stress ?
2- what is the method to understand the amount of secondary and primary from results of FEA ?
3- why abaqus rotates the axes of stresses (the x axis in direction of SCL ) ? what is the necessity ? why not calculating in global directions ?
thank you
i am doing an stress linearization in a perforated region of a connection of shell to tubesheet.
i have read the similar threads but it did not exactly solve my problem.
i want to discuss numerically.
my problem is that the stress i see as a total von mises , )not by stress linearization) is 218 Mpa .
1- i have to mention that tubesheet yield is 218 Mpa and the shell is 250. in stress analysis i see maximum stress of 218.2 around transition area and a small plastic deformation. but when i choose my SCL for stress linearization in the region (both in tube sheet or head or exactly on material transition line ) the maximum amount of membrane+ bending is 260 MPA !!!
my question is that between the amounts 218.2 which is total and 260 , which is Pm(or Pl) + Pb + Q ? and why the membrane plus bending which is part of total stress has exceeded than 218.2 which is the total stress ?
2- what is the method to understand the amount of secondary and primary from results of FEA ?
3- why abaqus rotates the axes of stresses (the x axis in direction of SCL ) ? what is the necessity ? why not calculating in global directions ?
thank you