Geomagic design x 2016 manual pdf free download
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Geomagic design x 2016 manual pdf free download

Do not click on any boundary of the main mesh. The entire mesh will delete. To Undo any Editing Tools, click on the left-pointing arrow at the end of the Editing Tools rollup menu. Select Add Bridge to split the boundary into smaller sections. Figure 65 7. Adjust the More Options settings to match the previous Figure Accept the Fill Holes command by pressing the OK check.
Figure 66 3D Systems 38 Geomagic Design X Rewrap Instead of having to select every boundary in the part, the Rewrap command can extend all boundaries until there are no holes in the scan. Move the Overall Smoothness bar to Min. If it is deselected, the very large holes will not fill.
Figure 68 Figure 67 Optimize Mesh For higher quality printing, the scan data should be enhanced and optimized further. For parametric modeling, the following steps are not generally needed.
A higher quality mesh will create higher quality surfaces. Adjust the Enhance Level to find optimal result. This command finds these triangles automatically, and after accepting the command, they are removed. Accept or Cancel the Healing Wizard to exit. The parameters for each of these categories can be modified as needed. Design X also has built in Tutorials. The mesh is analyzed and surface contours are automatically generated to create extremely accurate surfaces to the scan.
Open training file 03c – AutoSurface. The Mechanical method will create a curve network more uniform and grid like. The Auto Surface command applies to the entire mesh. The second stage allows for editing of the generated patch network. Occasionally patches need to be edited and reshaped in order to build a better surface body. Edit the form of a single edge of a patch with the Deform option. Figure 77 5. Press the OK checkmark to accept the Auto Surface.
The Auto Surface can be edited after completion to go correct any failed patches. Use the Accuracy Analyzer to verify the resulting body. The Accuracy Analyzer is located in an unpinned dock on the right side. Open the Accuracy Analyzer dock. Change the tolerance on the color bar to 0. The default tolerance is set to 0. Hover the mouse over various areas of the mesh to see the deviations.
An automatic segmentation of the scan data into regions is one of the first steps in the modeling processes for most standard workflows. Open training file 04 — Regions. To make smoothly connected areas in a single region, move the slider to the left.
To make strictly separated regions, move the slider to the right. Figure 81 Figure 82 Editing Regions 1. Paint across the regions shown below to select many regions with one click. Select the Merge to combine the painted regions. Figure 83 4. The Merge tool can combine regions that are not physicallly touching.
Select the region shown in Figure Figure 87 Use the Insert command to manually create a region. Open training file 05a — Align Figure 90 2. Create a alignment using three planar regions. Choose the large Plane Region on the bottom of the part.
Choose the pink long thin Plane Region pointed at in Figure Select the Plane Region shown in Figure Figure 96 2. Create a Ref. Figure 98 Figure 99 4.
Create a symmetry plane going down the center of the part in the other direction. Create a alignment using the generated reference planes and a region plane. Choose Plane1 to set the Y Direction normal to the plane. Select Plane3. Open training file 05b — Align XYZ. Figure 2. Figure Interactive Alignment 1.
Create an XYZ alignment using the generated reference planes and a region plane. Select the Vector1 and Region Plane representing the top of the middle hub.
The blue circle can be twisted to manually clock the part to any location. Figure 3. The Best Fit Alignment will automatically start and have all of the options populated. Press the OK key to accept. This will make a much better registration between the files.
Any model can be created regardless of the scan quality. Creating sketch entities, constraining entities, and dimensioning are all introduced in this lesson.
Create a New File by selecting the icon on the top-most toolbar. Constraints 5. Double-click on the top-left Point of the Rectangle. The Constraint and information for that single point is now shown. Figure 6. Show and add Common Constraints of multiple sketch entities. Apply a Perpendicular Constraint to the lower left corner of the Rectangle. Figure 8. Figure Dimensioning LMB Click in space to set the linear dimension. LMB Click in space to set the angular dimension.
Figure Figure Edit the Dimensions by double-clicking on each value. Click the Exit button to finish the sketch. Import training file 07 — Basic Concept. Figure Figure 2. Change the Moving option to X-Y-Z. Click OK to accept the alignment based around the central hole. Figure Create Main Body 1. All sketches will still be created on the Base Plane, regardless of the height of the Offset Distance.
Use the Model Tree to Hide the Mesh. A line will be best fit to the entire segment. An arc will be best fit to the entire segment. This will create and accept the arc while still staying inside the command. Use the Centerpoint Arc to create the lower, segmented arc. Open the Accuracy Analyzer on the right side toolbar to display all points of an open loop.
Using commands from the Tools group allows for quick ways to close open sketch loops. Left click on one line segment surrounding one corner. The Trim will be directed based which side of the segment is selected. Figure Figure 8. Figure 9.
Figure Figure Double click on a dimension to edit the value. Verify there are no openings in the sketch loop, then press the Exit button in the top toolbar. Figure Turn on Deviation for Body inside of the Accuracy Analyzer dock. This face shows the solid body is both too small in areas and too large. To fix the inaccuracies of the model, Edit the base sketch.
This will align the sketch back normal to the screen. Select the lower sketch arc and press Delete. Click the Exit button to exit and accept. This surface is not directly editable since it is not based off of a sketch. If changing the Mesh Fit parameters does not create the desired surface, the mesh itself can be optimized and editing to make a better fitting surface.
Turn back on the Solid Body visibility. Notice the OK check is not available until the next stage is completed. This is the portion that will be kept. Turn the Deviation for Body back on in the Accuracy Analyzer dock to see the new resulting body.
This will speed up processing time for all proceeding steps instead of making the software rerun the analyzer. Extrude Cut 1. Turn on and off visbility of entities until only the Mesh and Regions are visible. Right Click on the Plane region shown below. This will show if there is any draft from the base plane.
The Mesh Sketch Setup can compensate for the draft when projecting the poly-lines back to the base plane. Figure Sketch the inner cutout using the Line and 3 Point Arc tools. An array of common sketch tools will immediately appear. Select the 3 Point Arc icon. Click on both end points and then the height of the pink polyline radius.
Figure Figure Figure Edit and adjust the sketch for a better overall model. Select Vertical from the Constraints box.
Select Parallel from the Common Constraint options. Hold Shift and select one of the vertical lines. Select Tangent from the Common Constraint options. Repeat the process on the other line to create tangency with the arc.
Use the Flip Direction arrow next to the Draft input. Figure 7. Figure Revolve Cut 1. Geometry group. Click the OK to accept and begin sketching. Right-Click on the Vector and select Convert Entities. Set constraints and dimensions then Right-Click in space and Exit the sketch. Figure Create Fillets 1.
Repeat the process on the fillet around the outside of the mesh. Add all edges belonging to the same size fillet. Right-Click the solid edge of the other cut out in Figure , and choose the Fillet icon. This will be used to figure out the varying radius.
Adjust the end points to match the pink polyline. Click again to place a new point in the approximate middle of the line. Insert any additional fillets to the model. Open training file 08 — Mech Freeform Surface. Figure Upper Surfaces 1. Having the surface more square to the part will allow for higher quality surfaces in the end. Hide only the Mesh Fit 1 surface body using the Model Tree.
Figure Figure Join Surfaces 1. Select the Spline tool in the Draw group. Repeat Step 2 for drawing a Spline on Mesh Fit 2 as close to parallel as possible to the first spline, then Accept the Spline.
Figure 5. Click the Exit button in the top left corner to finish the 3D Sketch. Figure Figure 9. This will apply tangency to the lofted surface where it connects to the original surfaces.
Reasoning for splitting the spline When trimming a surface by a curve, the split points on the curve will create a separate edge along the surface. Therefore, the surface edge length can be adjusted for lofting by editing the split points.
If the edge lengths are of similar size when lofting, the resulting surface will be smoother and of higher quality. Hide Surface Loft1 to view the Mesh with Regions on. In the 1st stage of the Loft Wizard, set the location and orientation of the Loft. Of Sections, and set the value to 5. Figure Figure 4. Rotate and adjust the manipulator to stretch the preview planes the long way across side body. Click the Next Stage button to continue. A preview of the flow of the fitted surface body will be displayed.
Sections can be added by holding Ctrl and clicking and dragging the section planes. Figure Click the OK button to finish the lofted surface. Create the adjacent surface with a Mesh Fit surface. Figure Figure Join Side Surfaces 1. As done previously, enter into a 3D Sketch to create clean trim lines for lofting between surfaces.
Click the Exit button in the top left corner to finish. Turn on the visibility for Mesh Fit3 and Surface Loft2. Create the next with a Mesh Fit surface. Enter into a 3D Sketch to create clean trim lines for lofting between surfaces. Hide all surfaces except the new Mesh Fit surface. Exit 3D Sketch with the button in the top left corner. Turn on the visibility for necessary surfaces. Hide 3D Sketch4 and show all the side surfaces.
Check continuity of the surface bodies. Figure Combine Upper and Side bodies 1. Turn on the visibility of the upper and side surfaces Surface Loft1 and Surface Loft4. Add a rounded, fillet edge to the connection of the two surfaces.
Figure 4. Right-Click and select the Exit button to finish the 3D Sketch. Hide the Mesh. Show the Surface Body and 3D Sketch 5 only. Repeat Step 6 using the lower spline and the side surface face. Figure Hide 3D Sketch5.
Repeat all of the previous steps on the other side where the fillet becomes unsmooth. Hybrid modeling allows for quickly creating a model which has accuracy and parametric features. The resulting model is helpful for checking assembly and analyzing. Import training file Knuckle. Choose Knuckle.
The file is loaded and displayed in the Model View. Figure Edit and Optimize Mesh 1. Select Knuckle in Feature Tree to edit. The Copied Mesh can still be used to track these features and shapes to use for sketch based modeling. This command also offers advanced options to control the size of poly-faces and the effects of smoothing a model.
Figure Create Cutting Planes Create reference planes which are used as base sketch. These planes should be located at original mesh not on offset mesh. Click Copied Mesh in Feature Tree. Geometry tab and group. Figure Figure 3. Badges Report an Issue Terms of Service. All Videos Rhino3D.
Education Tutorials GH Videos. Education Rhino3D. Geomagic design x user guide. Manual de laboratorio de quimica analitica cualitativa Meyer usw 1p manual Tiger cub handbook Form instructions Sap co notes pdf Danby ice maker dimssdb manual Uad console manual Solution manual auditing theory salosagcol Electric garage door manual override Fdot bms coding guide. Comment You need to be a member of RhinoFabStudio to add comments! It still demands a fair amount of engineering intuition and manual modeling.
One program that reduces the manual workload comes from 3D Systems, a rapid-prototyping system provider. It comes with a rich set of tools to help you extract and convert scan data into editable geometry.
The latest version sports a Tab Ribbon interface, a departure from the menu driven interface of the past. The software automatically subdivides the scan data into regions, identifiable from their distinct geometric features rounded corners, holes, curved surfaces, and so on.
From those regions, you can extract splines and curves you can use to build 2D profiles for extrusion. One of the useful feature of Design X is its deviation detection system. The process results in an editable feature history, even though the new geometry was not initially constructed in the targeted CAD program.
In aerospace and architecture, the design lifespan of the products tends to be much longer than consumer product lifespans.
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Calculate the Volume of the mesh. Figure 26 Figure 27 Figure 28 Figure 25 Figure 24 Help The Help Tab contains a list of contents and commands to find additional information about each topic. Sketch the inner profile shown in Figure ddownload Click the Cancel to exit. Select the Next Stage arrow to view and edit the generated sketch and extrusion.
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Geomagic design x 2016 manual pdf free download
Geomagic Design X Basic Training – replace.me – Free ebook download as PDF The content of this manual is furnished for informational use only. pdf. Geomagic Design X Basic Training – replace.me Author / Uploaded; Kevin Jael Diaz Marimon.