6-1. Simple Solid BASIC ANALYSIS. Simple Solid

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1 6-1 6 BASIC ANALYSIS

2 6-2 Model Description: This example is used to show some simple solid modeling while keeping the number of nodes of the solid mesh under the 300 node limit of the demonstration version.

3 6-3 Exercise Procedure: 1. Create the geometry. Geometry/Solid/Primitives... BASIC ANALYSIS Click the View Style toolbar button. Render Click the Dynamic Rotate toolbar button. Rotate to the isometric view shown. (Use the Left Mouse Button.) V1 Y Z X Set up points used to define our cutting plane. Geometry/Point... Methods^

4 6-4 Midpoint Click curves 4,9,10 in any order and press after each selection. V Y Z X Cancel Geometry/Solid/Slice... Select Solid 1. The plane definition dialog box is shown, but before filling in the boxes, set the Snap mode to Point. Right Click on screen. Snap To Point or... you could have also clicked the Snap To Point toolbar button.

5 6-5 Click the three points created previously in any order, then the dialog boxes will be automatically filled out for you. BASIC ANALYSIS Delete/Geometry/Solid... Select the sliced top-corner section as indicated (Solid 1). Yes View/Autoscale (Ctrl-A) Tools/Workplane... On Surface...

6 6-6 Select surface 9, and points 19, then 18 to set the workplane on the top surface. V Y Z X On Surface: 9 At Point: 19 Axis Point: 18 Geometry/Curve - Line/Rectangle... Methods^ Locate in Workplane X: 0.2 Y: 0.1 X: 0.8 Y: 0.4 The rectangle should appear within surface 9. Geometry/Boundary Surface...

7 6-7 Select the four curves of the rectangle (Curve 25, 26, 27, & 28). BASIC ANALYSIS Geometry/Solid/Extrude... Material: Direction: l Add - Protrusion l Positive Length: l To Depth 0.25 Surface... Select the rectangular boundary surface created in the previous step (Surface 13). Geometry/Solid/Fillet... Select the four curves at the base of the newly extruded solid (Curve 37, 38, 39, & 40). Radius: 0.1

8 6-8 View this model as a solid. We are done creating the geometry. Turn off the workplane. Right Click on screen. Workplane... Uncheck Draw Workplane. Done Draw Workplane View/Autoscale (Ctrl-A) Click the View Style toolbar button. Solid This puts you in the OpenGL graphics mode.

9 Apply loads to the model. A BASIC ANALYSIS B Model/Load/On Surface... Title: load Select the side surface A as indicated (Surface 15). Select the load type. Direction: Force Per Area l Normal to Surface Magnitude: -500 Cancel 3. Apply constraints to the model. Model/Constraint/On Surface... Title: constraint

10 6-10 Select the bottom surface, B, as shown (Surface 2). DOF: l Fixed Cancel 4. Mesh the solid. Mesh/Geometry/Solids... The default values for solid meshing determined by MSC/N4W are usually adequate to produce a good mesh. However, in this case we want a coarser mesh in order to keep the number of nodes down below 300. Enter an element size of 0.2. Element Size: 0.2 Load... Library Entry: 7075-T651 Al Plate Note: Remember, there are no units in MSC/N4W. All dimensions must be kept consistent with the unit system you used to define your material properties. Always make sure this is correct from the beginning because there is no way to correct inconsistencies in units once the model is built. Uncheck Midside Nodes. Midside Nodes

11 6-11 Note: Turning off the automatic insertion of midside nodes is not a recommended practice for any model, because the four noded tetrahedral elements will behave too stiffly to get accurate answers. It is only done here to keep the number of nodes below 300. The model is now ready for analysis. BASIC ANALYSIS 5. Get acquainted with postprocessing. For this example we included an MSC/N4W model file with results that you can use for postprocessing. If you ran your own analysis, you may use those results. File/Open... Find the mscn4w30\examples directory and choose the msolidp.mod file. File name: msolidp.mod Open If you wish to save the model you built, please do so. Otherwise, select No to move on. No This section will take you through some of the ways you can use MSC/N4W to view the analysis results. Click the Quick Options toolbar button or press (Ctrl-Q). Quick Options Geometry Off Labels Off Done

12 6-12 View/Select... (F5) Deformed Style: Contour Style: l Deform l Contour Deformed and Contour Data... Output Set: 1..MSC/NASTRAN Case 1 Deformation: Contour: 1..Total Translation Solid Von Mises Stress Click the Dynamic Display toolbar button. Dynamic Display Rotate the view to see the deformations and contours on all sides of the model. (Click left mouse button and drag.)

13 6-13 When done viewing: View/Advanced Post/Dynamic Cutting Plane... Adjust the slider bar to move the cutting plane through the model. Define a different cutting BASIC ANALYSIS Plane... plane using the plane definition dialog box. Press the Dynamic Display button to rotate the view of the cutting plane. When done: View/Advanced Post/Dynamic IsoSurface... Adjust the slider bar to change the value of the isosurface being shown. The isosurface itself is calculated from the output vector chosen for the contour vector. Put a value in the Value box and press Apply to see an isosurface at that value. Rotate the view if you like. When done: View/Select... (F5) Contour Style: l IsoSurface

14 6-14 View/Options... (F6) Category: Options: l PostProcessing IsoSurface Apply Contour Deformed You can view a different isosurface by changing the IsoSurface At value. IsoSurface At: (any) Apply Use View / Advanced Post / Dynamic IsoSurface... to dynamically change the isosurface value. View / Advanced Post / Dynamic IsoSurface... When done: View/Select... (F5) Deformed Style: Contour Style: l Animate l Contour View/Options... (F6) Category: Options: l PostProcessing Animated Style

15 6-15 Change the number of Frames to get a smoother animation. Increase the Delay to slow down the animation. Apply Select the Contour/Criteria Levels option. Check the Animate box to animate the contour colors along with the deformation. Options: Contour/Criteria Levels BASIC ANALYSIS Apply Animate This is the end of the example. Before moving on, experiment with some of the different postprocessing and viewing options on your own.

16 6-16

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