8. F modeling#

8.1. Characteristics of modeling#

Modeling a quarter cylinder.

Plate elements DKT: TRIA3

_images/Object_16.svg

Discretized geometry is shown above.

point

knot

\(K\)

\(\mathrm{NO1}\)

\(L\)

\(\mathrm{NO11}\)

\(M\)

\(\mathrm{NO161}\)

\(N\)

\(\mathrm{NO227}\)

\(P\)

\(\mathrm{NO6}\)

\(Q\)

\(\mathrm{NO215}\)

8.2. Characteristics of the mesh#

Number of knots: 231

Number of meshes and type: 400 TRIA3 + 80 SEG2

8.3. Boundary conditions in movement and rotation#

8.3.1. Gravity#

Move \(\mathrm{DZ}\) is stuck on the group of nodes \(\mathrm{LM}\).

The movement \(\mathrm{DY}\) as well as the rotations around the axes \(X\) and \(Z\) are blocked on the group of nodes \(\mathrm{KL}\).

The movement \(\mathrm{DX}\) as well as the rotations around the axes \(Y\) and \(Z\) are blocked on the group of nodes \(\mathrm{MN}\).

8.3.2. Thermal expansion case no. 1#

The \(\mathrm{DZ}\) movement as well as the rotations around the \(X\) and \(Y\) axes are blocked on the node groups \(\mathrm{KNSANSKN}\) and \(\mathrm{LMSANSLM}\).

The movement \(\mathrm{DY}\) as well as the rotations around the axes \(X\) and \(Z\) are blocked on the group of nodes \(\mathrm{KL}\).

The movement \(\mathrm{DX}\) as well as the rotations around the axes \(Y\) and \(Z\) are blocked on the group of nodes \(\mathrm{MN}\).

The \(\mathrm{DZ}\) movement and the rotation around the \(Y\) axis are blocked on the group of nodes \(\mathrm{KETL}\).

The \(\mathrm{DZ}\) movement and the rotation around the \(X\) axis are blocked on the group of nodes \(\mathrm{METN}\).

8.3.3. Thermal expansion case no. 2#

The \(\mathrm{DZ}\) movement as well as the rotations around the \(X\) and \(Y\) axes are blocked on the node groups \(\mathrm{KNSANSKN}\) and \(\mathrm{LMSANSLM}\).

The movement \(\mathrm{DY}\) as well as the rotations around the axes \(X\) and \(Z\) are blocked on the group of nodes \(\mathrm{KL}\).

The movement \(\mathrm{DX}\) as well as the rotations around the axes \(Y\) and \(Z\) are blocked on the group of nodes \(\mathrm{MN}\).

The \(\mathrm{DZ}\) movement and the rotation around the \(Y\) axis are blocked on the group of nodes \(\mathrm{KETL}\).

The \(\mathrm{DZ}\) movement and the rotation around the \(X\) axis are blocked on the group of nodes \(\mathrm{METN}\).

8.4. F modeling results#

Identification

Knot (mesh)

Value tested

Reference

Gravity

\(K\)

\(\mathrm{DX}(\mathrm{mm})\)

—2.40000 10—8

\(N\)

\(\mathrm{DY}(\mathrm{mm})\)

—2.40000 10—8

\(P\)

\(\mathrm{DZ}(\mathrm{mm})\)

5.00000 10—9

\(Q\)

\(\mathrm{DZ}(\mathrm{mm})\)

5.00000 10—9

\(-\mathrm{DRX}\)

\(-\mathrm{DRY}\)

2.40000 10—9

\(\mathrm{DRX}\)

\(\mathrm{DRX}\)

2.40000 10—9

\(K(\mathrm{M362})\)

\(\mathrm{NYY}(N)\)

8.00000 10—4

\(N(\mathrm{M400})\)

\(\mathrm{NYY}(N)\)

8.00000 10—4

\(L(\mathrm{M362})\) Inner skin

\(\mathrm{SIYY}(\mathrm{MPa})\)

8.00000 10—4

\(N(\mathrm{M400})\) Inner skin

\(\mathrm{SIYY}(\mathrm{MPa})\)

8.00000 10—4

Dilation case 1

\(L(\mathrm{M1})\)

\(\mathrm{MYY}(\mathrm{N.mm})\)

—2.38095 10—1

\(M(\mathrm{M39})\)

\(\mathrm{MYY}(\mathrm{N.mm})\)

—2.38095 10—1

\(L(\mathrm{M1})\) Inner skin

\(\mathrm{SIXX}(\mathrm{MPa})\)

1.428571

\(M(\mathrm{M39})\) Inner skin

\(\mathrm{SIXX}(\mathrm{MPa})\)

1.428571

Dilation case 2

\(L\)

\(\mathrm{DX}(\mathrm{mm})\)

26.0000 10—6

\(M\)

\(\mathrm{DY}(\mathrm{mm})\)

26.0000 10—6

\(L(\mathrm{M1})\)

\(\mathrm{NYY}(N)\)

—2.00000 10—1

\(M(\mathrm{M39})\)

\(\mathrm{NYY}(N)\)

—2.00000 10—1

\(L(\mathrm{M1})\) Inner skin

\(\mathrm{SIYY}(\mathrm{MPa})\)

—2.00000 10—1

\(M(\mathrm{M39})\) Inner skin

\(\mathrm{SIYY}(\mathrm{MPa})\)

—2.00000 10—1