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Entering the Generative Shape Design WorkbenchThis first task shows you how to enter the Generative Shape Design workbench and open a wireframe design part.Before starting this scenario, you should be familiar with the basic commands common to all workbenches. These are described in the Infrastructure Users Guide.1. Select Shape - Generative Shape Design from the Start menu.The Shape Design workbench is displayed.The New Part name dialog box may appear depending on the way you customized your session. It provides a field for entering the name you wish to assign to the part, an option that enables hybrid design an two other options to insert a geometrical set and/or an ordered geometrical set in the part to be created.If you select Enable hybrid design, the capability then applies to all the bodies you will create in your CATIA session (and not only to the new CATPart document you are opening). Consequently, if your session contains CATPart documents already including traditional bodies, the new bodies you will create subsequently in these documents will possibly include wireframe and surface elements. To facilitate your design, It is therefore recommended that you do not change this setting during your session. For more information, refer to the Part Document chapter in Customizing section of the Part Design documentation.2. Select File - Open and navigate to the samples directory. 3. Select the GettingStartedShapeDesign.CATPart document.A wireframe design part is displayed:o You can add the Generative Shape Design workbench to your Favorites, using the Tools - Customize item.For more information, refer to the Infrastructure Users Guide. o If you wish to use the whole screen space for the geometry, remove the specification tree by selecting the View - Specifications command or pressing F3. Lofting, Offsetting and IntersectingThis task shows you how to create a multi-sections and an offset surfaces as well as an intersection.1. Click the Multi-sections Surface icon .The Multi-sections Surface Definition dialog box appears.2. Select the two section curves. 3. Click within the Guides window then select the two guide curves.4. Click OK to create the multi-sections surface.5. Click the Offset icon . 6. Select the multi-sections surface. 7. Enter an offset value of 2mm.The offset surface is displayed normal to the multi-sections surface.8. Click OK to create the offset surface.9. Click the Intersection icon .The Intersection dialog box appears. 10. Select the offset surface then the first plane (Plane.2) to create the intersection between these two elements.11. Click OK in the dialog box.The created elements are added to the specification tree:12.Splitting, Lofting and FilletingThis task shows how to split surfaces then create a multi-sections surface and two fillets.1. Click the Split icon .The Split Definition dialog box appears.2. Select the offset surface by clicking on the portion that you want to keep after the split. 3. Select the first plane (Plane.2) as cutting element. 4. Click OK to split the surface.5. Repeat the previous operations by selecting the multi-sections surface then the second plane (Plane.3) to define the intersection first, then to cut the surface. 6. Click OK to split the surface.7. Click the Multi-sections Surface icon .The Multi-sections Surface Definition dialog box appears.8. Select the intersection edges of the two split surfaces as sections.9. Click OK to create the multi-sections surface between the two split surfaces.10. Click the Shape Fillet icon .The Fillet Definition dialog box appears.11. Select the first split surface as thefirst support element (Split.3). 12. Select the multi-sections surface you just created as the second support element (Multi-sections Surface.3). 13. Enter a fillet radius of 3mm.The orientations of the surfaces are shown by means of arrows.14. Make sure that the surface orientations are correct (arrows pointing down) then click OK to create the first fillet surface. 15. Repeat the filleting operation, clicking the icon, then selecting the second split surface as thefirst support element. 16. Select the previously created filleted surface as the second support element. 17. Enter a fillet radius of 3mm. 18. Make sure that the surface orientations are correct (arrows pointing up) then click OK to create the second filleted surface.The created elements are added to the specification tree:Sweeping and FilletingThis task shows how to create swept surfaces and fillets on both sides of the part. You will use the profile element on the side of the part for this. In this task you will also create a symmetrical profile element on the opposite side of the part.1. Click the Swept Surface icon .The Swept Surface Definition dialog box appears.2. Click the Explicit sweep icon. 3. Select the profile element (Corner.1). 4. Select the guide curve (Guide.1). 5. Select the central curve (Spline.1) as the spine.6. Click OK to create the swept surface.7. Click the Symmetry icon .The Symmetry Definition dialog box appears.8. Select the profile element to be transformed by symmetry. 9. Select the YZ plane as reference element.10. Click OK to create the symmetrical profile element. 11. Click the Sweep icon again. 12. Select the profile (Symmetry.3) and the guide curve (Guide.2). 13. Select the central curve (Spline.1) as the spine. 14. Click OK to create the swept surface.15. To create a fillet between the side portion and the central part click the Shape Fillet icon . 16. Select the side sweep element and the central portion of the part, then enter a fillet radius of 1mm (make sure the arrows are pointing up). 17. Click Preview to preview the fillet, then OK to create it. 18. Repeat the filleting operation between the other sweep element and the central portion of the part, and entering a fillet radius of 1mm (make sure the arrows are pointing up). 19. Click OK to create the fillet.The created elements are added to the specification tree:20.Using the Historical GraphThis task shows how to use the Historical Graphs commands and contextual commands.Open any .CATPart document.1. Select the element for which you want to display the historical graph. 2. Click the Show Historical Graph icon .The Historical Graph dialog box appears.In this case, you can examine the history of events that led to the construction of the Multi-sections surface.1 element. Each branch of the graph can be expanded or collapsed depending on the level of detail required.The following icon commands are available:Add GraphAdds a selected element to the graphRemove GraphRemoves a selected element from the graphReframeCenters the graph in the windowSurface or Part graph representationGives a horizontal or vertical representationParametersDisplays any parameters associated with the elements in the graphConstraintsDisplays any constraints associated with the elements in the graph3. Right-click anywhere in the historical graph to display the contextual menu:Hide/ShowHides or shows an elementPropertiesDisplays the properties of an elementReframe graphCenters the graph in the windowPrint wholeAllows you to obtain a print of the graphGraph AllDisplays the whole graph of the part (as well as the roots and their first parents)Clean Graph Clears the graph from the windowRefreshRefreshes the graph displayExpand AllDisplays the parents of the elements in the graph (but not the roots)Selecting and right-clicking an element enables the user to add the children to the selected element.4.Transforming the PartThis task shows you how to modify the part by applying a
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