Engineering Solutions is a modeling and visualization environment for NVH, Squeak and Rattle Director, Crash, CFD, and Aerospace using
best-in-class solver technology.
The Crash application offers a tailored environment in HyperWorks that efficiently steers the Crash CAE specialist in CAE model building, starting from CAD geometry and finishing with
a runnable solver deck in Radioss, LS-DYNA and PAM-CRASH 2G.
HyperWorks offers high quality tools for CFD applications enabling the engineer to perform modeling, optimization and post-processing
tasks efficiently.
Manage all of the IDs for the entities that you create, and define ID ranges for all of the entities in each Include
file in relation to the full model in order to avoid ID duplication.
Export an input deck, for the appropriate solver, in order to simulate the deformation of the seat under the dummy.
The simulation result files can be imported to update the initial FE model and remove the intersections and penetrations
between the dummy and the seat.
Define modal analysis cards, such as extraction methods, frequency range, modes to expand, iterative solver tolerance,
modes significance level and solution control options.
Use the Transformation Tool to translate, scale, reflect or rotate elements with multiple numbers of copies, including
properties and loads, attached to them.
Browsers supply a great deal of view-related functionality by listing the parts of a model in a tabular and/or tree-based
format, and providing controls inside the table that allow you to alter the display of model parts.
Perform automatic checks on CAD models, and identify potential issues with geometry that may slow down the meshing
process using the Verification and Comparison tools.
Create pretension loads in 1D and 3D bolts of ANSYS models
using the ANSYS PRETS179 element type.
Element PRETS179 is a bar element with a third node used for pre-loading. Use the
Pretension Bolt tool to get a pre-loaded bolt with PRETS179 elements created at the desired
location with a third node. A pretension section is created and associated with the
pretension elements created. Also, the pretension load card SLOAD is created with the
defined load in the utility, as well as a load steps on and off values. You can edit this
load card after completing this process.
Restriction: The Pretension Bolt tool is
only available in the ANSYS solver interface.
From the menu bar, click Tools > Pretension Bolt.
The Pretension Bolt dialog opens.
For Pretension Type, select the type of bolt to create.
In the Node ID field, enter the node ID for the third node of the pretension
element.
Note: If you do not enter a node ID, a default node number will be assigned.
In the Section Name field, enter a name for the pretension section to be created.
Note: If you do not enter a section name, a default name will be assigned.
Toggle the type of method for loading the bolt to either Force
or Displacement, then enter a corresponding value.
In the Loadstep ID to activate [LSLOAD] field, enter the load step ID to which the load
is to be applied.
In the Loadstep ID to lock [LSLOCK] field, enter the load step ID to which the
displacements or force loads needs to be locked.
Click Create.
Select source entities for the pretension bolt.
Option
Description
1D pretension bolt
In the panel area, use the Nodes selector to select the
nodes of the 1D elements where the pretension element needs to be created and then
click proceed.
3D pretension bolt
In the panel area, use the Comps selector to select the
bolt component and then click proceed.
Note: Multiple
components are not allowed to be selected. If more than one bolt is selected,
they will all be placed under one component.
Use the elems selector to select the elements which form the cut section of the
bolt and then click proceed.
Pretension elements are
created at this section.
Use the node selector to select two or three nodes that define the load
direction for the pretension load and then click
proceed.
For 1D pretension bolts, PRETS179 elements are created at the node locations, with the
pretension section created and associated to these elements. A SLOAD card with the given
pretension load is also created.
For 3D pretension bolts, PRETS179 elements are created at the cut section with the
pretension section created and associated to these elements. A SLOAD card with the given
pretension load is also created.