RFORCE
Bulk Data Entry Defines a static loading condition due to a centrifugal force field. It can also be used to define the EXCITEID field (Amplitude "A") of dynamic loads in RLOAD1, RLOAD2 , TLOAD1 and TLOAD2 Bulk Data Entries.
Format
(1) | (2) | (3) | (4) | (5) | (6) | (7) | (8) | (9) | (10) |
---|---|---|---|---|---|---|---|---|---|
RFORCE | SID | G | CID | A | R1 | R2 | R3 | ||
RACC | IDRF |
Example
(1) | (2) | (3) | (4) | (5) | (6) | (7) | (8) | (9) | (10) |
---|---|---|---|---|---|---|---|---|---|
RFORCE | 2 | 5 | 0.0 | 0.0 | 1.0 | 2.2 | |||
1.0 |
Definitions
Field | Contents | SI Unit Example |
---|---|---|
SID | Load set identification
number. No default (Integer > 0) |
|
G | Grid point identification
number through which the rotation vector acts.
Default = 0 (Integer ≥ 0) |
|
CID | Coordinate system defining
the components of the rotation vector.
Default = 0 (Integer ≥ 0) |
|
A | Scale factor of the
rotational velocity in revolutions per unit time. Default = 0.0 (Real) |
|
R1,R2,R3 | Rectangular components of
rotation direction vector. The vector defined will pass through
point G. No default (Real; R12 + R22 + R32 > 0.0) |
|
RACC | Scale factor of the
rotational acceleration in revolutions per unit time squared. The
continuation line containing RACC is
optional. (Real) |
|
IDRF | Set Identification Number of an element set (SET Bulk Data Entry) to which this RFORCE entry applies. This field can be used to define different Rotational forces to different parts of the model. |
Comments
- The rotational forces
that are created with an RFORCE entry for a constant angular
velocity (A), act in the positive radial direction. They represent the initial
forces on the structure due to a constant angular velocity. The rotational forces
defined for a constant angular acceleration (RACC), act in the
same direction as the angular acceleration. They would be opposite to the inertia
forces on the structure due to a constant angular acceleration. The following plot
shows that the RFORCE vector at node Gi is
given by:
(1) Where,- angular velocity
- =
- angular acceleration
- =
- The RFORCE load is selected for use in a subcase by the Subcase Information Entry LOAD.
- The load vector generated by this entry can be printed using the I/O Option OLOAD.
- For CONM1 and
CONM2 entries, OptiStruct
calculates the torque, due to rotation, as:
(2) Where,- Moment of inertia
- For mass penalization information when RFORCE is used in a Topology optimization, see Design Variables for Topology Optimization in the User Guide.
- This card is represented as a load collector in HyperMesh.