Force
Force
The Force block is a Boundary Condition for analysis that applies a force over a selected boundary. The force is evenly distributed over the selected entities. The Force block requires a Boundary to choose where to apply the force, and a Vector, to determine the magnitude and direction of the force. There is an optional input of a Frame, allowing for further definition of the orientation of the Force.The downward arrows in the image represent the -1000N of Force acting in the negative Z-direction over the box. If you want more control over the direction of the force, you can edit it using the ‘Frame’ input.

Point Force
Point Force
The Point Force block applies a point force to a selected boundary by distributing the load through rigid body elements.

Edge Force
Edge Force
The Edge Force block applies a force vector to selected boundary edge entities. The force will be distributed over the nodes on the selected edge. This block accepts a vector field for the force, so you can input a varying force across the selected edge entities, as shown below.

Surface Force
Surface Force
The Surface Force block applies a general force vector field to selected boundary face entities. The force will be distributed over the nodes of the selected faces. This block accepts a vector field for the force, so you can input a varying force across the selected face entities.

Acceleration Load
Acceleration Load
The Acceleration Load block applies an acceleration load to a selected region. The applied force is calculated by multiplying the acceleration vector by the element masses and distributing it over the nodes. You can use this block to add gravity as a load case.

Point Moment
Point Moment
The Point Moment block applies a point moment to a selected boundary by distributing the load through rigid body elements.

Pressure
Pressure
The Pressure block applies pressure to selected boundary face entities.

Bearing Force
Bearing Force
The Bearing Force block applies a bearing load on a cylindrical boundary based on a sinusoidal distribution.


