Home / Technical Notes / Stress Analysis / Results Obtained in the Stress Analysis (Table)
Result Table in the Stress Analysis
Results obtained are as in the following table.
|
Item |
Parametric Analysis |
Parametric Analysis |
Analysis |
Notes |
|
Time |
Time |
None |
Static Analysis Transient Analysis |
Gives you the time [s]. |
|
Step |
Step |
None |
Static Analysis |
Gives you the step. |
|
External/Reactive force |
X Component of the External/Reactive Force |
Boundary Condition |
Static Analysis Harmonic Analysis Transient Analysis |
Gives you X, Y, and Z components of external/reactive force [N] on the specified boundary condition.
|
|
Torque |
Torque |
Boundary Condition |
Static Analysis Harmonic Analysis Transient Analysis |
Gives you the torque [Nm] on the specified boundary condition.
The supporting boundary condition types are displacement, normal displacement, rotational displacement, and torque load. Displacement torque and normal displacement torque are given only when the rotational displacement is set with single rotation axis. |
| Contact Force |
X component of the Contact Force |
Boundary Pair |
Static Analysis Transient Analysis |
Gives you X, Y, and Z components of the contact force [N] on the specified boundary condition pair. |
| Strain Energy |
Strain Energy |
Body Attribute |
Static Analysis Harmonic Analysis Transient Analysis |
Gives you the strain energy [J] of the specified body attribute. |
|
Total strain energy |
None |
Gives you the total strain energy [J]. |
||
|
Maximum Displacement |
Ux component of Maximum Displacement Uy component of Maximum Displacement Uz component of Maximum Displacement |
None |
Static Analysis Harmonic Analysis Transient Analysis |
Gives you Ux, Uy, and Uz components of maximum displacement [m]. |
|
Maximum Stress |
Maximum Tensile Stress Maximum Compressive Stress Maximum von Mises Equivalent Stress |
None |
Static Analysis Harmonic Analysis Transient Analysis |
Gives you the maximum tensile stress, maximum compressive stress, and maximum von Mises equivalent stress [Pa].
It is not given if the material loss (mechanical loss tangent) is taken into account in the harmonic analysis. |
| Mass |
Mass |
Body Attribute |
Static Analysis Resonant Analysis Harmonic analysis Buckling Analysis |
Gives you the mass [kg] of the specified body attribute.
It is given only if [Calculate the mass and the moment of inertia] is selected in the analysis condition. |
|
Total mass |
None |
Gives you the total mass [kg].
It is given only if [Calculate the mass and the moment of inertia] is selected in the analysis condition. |
||
|
Moment of Inertia |
Moment of Inertia |
None |
Gives you the moment of inertia [kg*m2].
It is given only if [Calculate the mass and the moment of inertia] is selected in the analysis condition. |
|
|
Adjusted Thermal Strain |
XX component of the adjusted thermal strain YY component of the adjusted thermal strain ZZ component of the adjusted thermal strain YZ component of the adjusted thermal strain ZX component of the adjusted thermal strain XY component of the adjusted thermal strain |
Body Attribute |
Static Analysis (Step Analysis) |
Gives you XX, YY, ZZ, YZ, ZX, and XY components of the corrected thermal strain by the material change of the specified body attribute.
Those are given only if material change is set for the body attribute. |
|
Resonant Frequency |
Resonant Frequency |
None |
Resonant Analysis |
Gives you the resonant frequency [Hz]. |
|
Effective mass |
Ux Component of Effective Mass Uy Component of Effective Mass Uz Component of Effective Mass |
None |
Resonant Analysis |
Gives you Ux, Uy, and Uz components [kg] of effective mass.
Refer to Participation Factor and Effective Mass in Resonant Analysis for details. |
|
Accumulated Ux Component of Effective Mass Accumulated Uy Component of Effective Mass Accumulated Uz Component of Effective Mass |
None |
Resonant Analysis |
Gives you the accumulated Ux, Uy, and Uz components [kg] of effective mass.
Refer to Participation Factor and Effective Mass in Resonant Analysis for details. |
|
|
Effective Mass Ratio |
Ux Component of Effective Mass Ratio Uy Component of Effective Mass Ratio Uz Component of Effective Mass Ratio |
None |
Resonant Analysis |
Gives you Ux, Uy, and Uz components [%] of effective mass ratio.
Refer to Participation Factor and Effective Mass in Resonant Analysis for details. |
|
Accumulated Ux Component of Effective Mass Ratio Accumulated Uy Component of Effective Mass Ratio Accumulated Uz Component of Effective Mass Ratio |
None |
Resonant Analysis |
Gives you the accumulated Ux, Uy, and Uz components [%] of effective mass ratio.
Refer to Participation Factor and Effective Mass in Resonant Analysis for details. |
|
| Participation Factor |
Ux component of participation factor Uy component of participation factor Uz component of participation factor |
None |
Resonant Analysis |
Gives you Ux, Uy, and Uz components of participation factor.
Refer to Participation Factor and Effective Mass in Resonant Analysis for details. |
| Buckling Load Factor |
Buckling Load Factor |
None |
Buckling Analysis |
Gives you the buckling load factor.
See Buckling Analysis for more information. |
| Convergence Judgment |
Convergence Judgment |
None |
Static Analysis Transient Analysis Resonant Analysis |
Gives you the convergence judgment for the nonlinear calculation. 1: Converged 0: Not converged |


