COMPUTER AIDED ENGINEERING FROM A TO Z
Under Construction
For analysis and evaluation of complex constructions finite element
analysis method applies years in research and development since the
mid-the 60iger. Today, complex studies are carried out with
high-performance machines.
Here makes their pooled Know-how you available!
A - as Approximation ...
How looks a meaningful approximation?
B - as Beam Element ...
What must be included when using beam elements?
C - as Constraint ...
What do contraints?
T - as Triangle Element
... What must be included when using triangle elements?
E - as Eigenfunction ...
What is an eigenfunction?
D - as Degree of
Freedom... What is a degree of freedom?
G - as GAP Element ...
What is a gap element?
P - as Principal Stresses...
What are pricinpal stresses?
I - as Isotropy...
What is an isotroper material?
C - as Control ...
How important are controls?
L - as Load ...
How looks the load conduction in the calculation model?
M - as Mass ...
Where masses are involved
N - as Nonlinearity...
What must be reviewed in a non- linear calculation?
O - as Optimization ...
How is a system optimized?
P - as Plausibility Preview ...
Why plausibility previews run?
P - as POISSON´s Ratio ...
What does the POISSON´s ratio?
B - as Boundary Condition ...
How boundary conditions are brought in?
S - as Shell Element ...
Where shell elements used wisely?
T - as Temperature Load ...
How consider temperature loads?
I - as Imbalance...
How consider imbalance?
V - as Volume Element...
When volume elements used?
T - as Theory of Strength of Materials...
Which theory of strength of materials is used in a linear calculation?
T - as Tensile Stress ...
When should the tensile stress in appear?