Results Toolbar
The Results toolbar provides you quick access to the Contour panel, Iso panel, Vector panel, Tensor panel, Deformed panel, Create/Edit Derived Load Case dialog, Expression Builder dialog, Streamlines panel, Tracking panel, and Query panel.
![](../../images/post_processing/hv_toolbar_results.png)
Figure 1. Results Toolbar
Button | Panel/Dialog/Tab | Description |
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Opens the Contour panel. | Define contour options for FEA results. |
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Opens the Iso panel. | View iso values for a selected result type, such as density, stress, or strain values. |
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Opens the Vector panel. | View a vector plot for nodal vector results such as displacements, velocities, and accelerations. |
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Opens the Tensor panel. | View tensor plots of stress and strain directions and magnitudes for various solvers from elemental values. |
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Opens the Deformed panel. | Specify parameters, such as the scale factor, for deformation display for an FEA model. |
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Opens the Derived Load Cases dialog. | Create a derived load case from other load cases, or from a combination of other load cases and simulation steps. |
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Opens the Expression Builder dialog. | Allows user-defined data type expressions to be authored directly within HyperView. |
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Opens the Streamlines panel. | Define multiple line and area rakes, with options to control the number of seeds and the integration mode. |
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Opens the Tracking panel. | Track a component during animation. When a component is tracked, the view remains constant with respect to the selected nodes. |
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Opens the Query panel. | Retrieves properties for nodes, components, elements, and systems. |
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Opens the Systems Review Dialog dialog. | Review the orientations of various element systems (1D, 2D, or 3D), as well as material and ply systems. |
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Opens the Free Body Diagrams (FBD) utility. | Facilitates the extraction and post-processing of Grid Point Force (GPFORCE) results and can be used create and edit Free Body Diagrams (FBD). |
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Opens the Stress Linearizationutility. | Create and manage the Stress Classification Lines used for stress linearization. |