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Select the center hole on the base view. Select the unwanted dimensions and press Delete.
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Buying with Autodesk. Renewal options. Set the Counterbore Diameter to 0. Set the Counterbore Depth to 0. Creating a Circular Pattern 1. Select the threaded hole created in the previous section.
Click the Rotation Axis button on the dialog. Select the outer cylindrical face of the model. Enter 6 in the Occurrence box and in the Angle box.
Select the Tapped Hole option. Set the Size to 0. Set the Designation to UNC. Click the Chamfer button on the Modify panel. Click the Distance and Angle button on the dialog. Click OK to create the chamfer. Save the model and close it. Select the cylindrical face of the counterbore hole located at the center. Select the circular edge of the counterbore hole.
In this tutorial, you will create the model shown in figure. Draw an L-shaped sketch using the Line and dimension it. Click the Line button and draw lines closing the offset sketch.
Add the offset dimension to the sketch. Click the Offset button on the Modify panel. Select the sketch and specify the offset position. Select the Symmetric option from the Mini toolbar. Set the Distance to 1. Click OK to create the first feature. Creating the Shell feature 5. Click OK to shell the model. You can create a shell feature by removing a face of the model and applying thickness to other faces. Set Thickness to 0. Select the top face and the back face of the model.
Creating the Third feature 1. Select the front face and the bottom face of the model. Additional Modeling Tools 2.
Draw a slot by selecting the first, second, and third points. Make sure that the second point is coincident with the lower horizontal edge. Apply dimensions to the slot. Select the sketch. Select the To option from the Extents dropdown.
Select the back face of the model. Click the Join button on the dialog. Click OK to create the feature. Select the All option from the Extents dropdown. Click the Cut button on the dialog. Creating a Cut Feature 1. Create the sketch on the front face of the model, as shown below. Creating the Rib Feature In this section, you will create a rib feature at the middle of the model. To do this, you must create a mid-plane. Select the mid plane. Click the Slice Graphics button at the bottom of the window.
Draw the sketch, as shown below. Select the right face of the model. Select the left face of the model; the midplane is created. Click Visibility on the Marking Menu; the plane will be hidden.
Click the Parallel to Sketch Plane on the dialog. Click the Direction 1 Click the Symmetric button below the Thickness box. Click OK to create the rib feature. Creating the Coil 1. To hide the midplane, select it and right-click.
Click the Circle Center Point button. Select a point on the left portion of the horizontal axis Move the cursor outward and click to create a circle. Click the Coil Size tab on the dialog. In the Coil Size tab, specify the settings as given next. Select the origin point of the sketch, move the cursor upward, and click to create a centreline.
Add the diameter dimension to the circle, as shown. Select the centreline and circle. Move the pointer downward and click. Type 1. Click the Coil Ends tab on the dialog. Specify the settings in the Coil Ends tab, as given next. In addition, the profile is automatically selected. Now, you need to select the axis of the coil. Click OK to create the coil. Select the centerline as the axis. Click the 76 Additional Modeling Tools 3.
Select the XZ plane. Draw the ellipse by selecting the points, as shown. Save the model as Coil. Select the ellipse, move the cursor downward, and click. Select the ellipse, move the cursor toward left, and click. Creating the First Section and Rails To create a swept feature, you need to create sections and guide curves. Select the YZ plane from the graphics window. Select a point on the horizontal axis of the sketch; a rubber band curve is attached to the cursor Right click and select Create Line from the Marking Menu.
Select the origin point of the sketch, move the pointer vertically upward and click to create a vertical construction line. Move the cursor up and specify the second point of the spline; a curve is attached to cursor. Move the cursor up and specify the third point. Likewise, specify the other points of the spline, as shown. Click the right mouse button and select Create. The spline will be similar to the one shown in figure. Select the second point of the spline and the construction line.
Move the cursor and click to place the dimension. Type 2. Select the lower end points of the vertical construction line and the spline. Apply the other horizontal dimensions to the spline, as shown in figure. Select the lower end points of the construction line and spline. Move the cursor downward and click. Type the 1. Select the origin point of the sketch and the top end point of the spline.
Move the pointer toward right and click. Type 8. Creating the second section 1. Select the XZ plane from the Browser window. Enter 8. Likewise, create other dimensions, as shown. Select the spline. Make sure that you select the curve and not the points. Click Mirror line on the Mirror dialog, and then select the construction line. Click Apply, and then click Done.
Select the newly created datum plane. Select the origin point, move the cursor outside, and click to create a circle. Right click and select General Dimension from the Marking Menu. Select the circle, move the cursor outward, and click. Click Click to add in the Sections group and select the circle. Select the ellipse. Click Click to add in the Rails group.
Select the first rail. Select the second rail. Click OK to create the loft feature. Creating the Loft feature 1. Select the Rails option from the dialog. Right click and select New Sketch from the Marking Menu.
Select the plane locate at the top of the sweep feature. Click the Extrude button on the Create panel. Extrude the circle up to 1 in. Select the YZ plane from the Browser window. Enter 2 in the Distance box and click OK. Additional Modeling Tools 4. Move the cursor toward left and click to place the dimension between the selected point. Right click and select Line from the Marking Menu. Right click and select Construction from the Marking Menu. Select the origin point of the sketch and the center point of the ellipse.
Right click and select OK; a construction line is created between the sketch origin and the ellipse. Also, the sketch is fully-constrained. Select the sketch, if not already selected. Click the Engrave from Face button on the dialog. Set the Depth to 0.
Click OK to create the embossed feature. Select the ellipse, move the cursor downward, and click Type 2 and press Enter. Mirroring the Emboss feature 83 1. Select the emboss feature from the model geometry. Additional Modeling Tools 3. Click OK to mirror the emboss feature. Creating Fillets 1. Click on the bottom and top edges of the swept feature.
Set Radius to 0. Click Click to add on the Fillet dialog. Additional Modeling Tools Shelling the Model 1. Select the top face of the cylindrical feature. Click the Slice Graphics icon located at the bottom of the window. Right click and select Centerline from the Marking Menu.
Select the origin point of the sketch, move the cursor vertically upward and click to create a vertical centreline. Press Esc. Deactivate the Centerline icon on the Format panel. Create a horizontal construction line, as shown. Click OK to create the shell. Adding Threads 1. Deactivate the Construction icon on the Format panel of the Sketch ribbon tab. Create a closed profile, as shown. Draw the thread profile. Select the two inclined lines of the sketch, and then select the construction line; the two inclined lines are made symmetric about the construction line.
Make sure that the Equal button is active on the 2D Fillet box. Select the two corners of the sketch, as shown. Select the two inclined lines, move the cursor horizontally toward left and click. Type 60 in the Edit Dimension box and press Enter. Close the 2D Fillet dialog box. Select the axis of the coil. Select the edges of the end face of the thread. Draw a straight line connecting the end points of the projected elements.
Activate the Revolve tool and click on the vertical line of the sketch. Click the Direction 1 button. Save the model. Creating a 3D Sketch 1. Likewise, blend the other end of the thread. This changes the view orientation to Home. Expand the Draw panel on the ribbon and activate the Precise Input option. On the Precise Input toolbar, click the Reset to Origin button. Select the Relative option from the drop-down available on the Precise Input toolbar. Type-in 12 in the X box and press Tab on your keyboard.
Likewise, type-in 0 in the Y and Z boxes. Press Enter to specify the second point. Type-in 0, 0, and 20 in the X, Y, and Z boxes, respectively. Press Enter. Type-in 0,18, 0 in the X, Y, and Z boxes, respectively. On the Precise Input toolbar, click in the X box and type 0. Press the Tab key and type 0 in the Y box. Likewise, type 0 in the Z box. Press Enter to specify the first point. Type-in 0, 0 and in the X, Y and Z boxes, respectively. Type-in , 0, and 0 in the X, Y, and Z boxes, respectively.
Type-in 0, 18, and 0 in the X, Y, and Z boxes, respectively. Click the right mouse button and select OK. Type-in 3 in the Bend dialog and select the intersecting lines, as shown in figure. Drag a selection box and select all the sketch elements. Click Apply and Done on the dialog. Likewise, bend the other corners of the 3D sketch. Select the origin point of the sketch. Click on the horizontal line of the sketch and its end point. Add dimensions to fully define the sketch.
Select the newly created plane. Create two concentric circles of 1. Zoom into the circular sketch and click in the outer loop. Click on the 3D sketch to define the sweep path. Click OK to sweep the profile.
Add dimensions from the sketch origin to position the circles. Click on the tubes on both sides of the sketch. Start a sketch on the YZ Plane. Click the Slice Graphics icon at the bottom of the graphics window. Draw two concentric circles and dimension them. On the Extrude dialog, uncheck the Check to terminate feature on the extended face options. Activate the Extrude tool and click in the outer loop of the sketch.
This will avoid the extruded feature from terminating on the extended portion of the selected surface. Click OK to extrude the sketch. On the Browser window, click the right mouse button on the 3D Sketch and select Visibility; the 3D sketch is displayed. Click on the extrude feature. On the Rectangular Pattern dialog, click the Direction 1 button, and then click on the 3D sketch. Type-in 3 and 23 in the Column Count and Column Spacing boxes, respectively.
Click the double-arrow button located at the bottom of the dialog. This expands the dialog. Set the Orientation to Direction 1. Click OK to pattern the extruded feature. On the Browser window, click the right mouse button on the 3D sketch and select Visibility.
Select the plane tangent to the extruded feature. Select the sketch point to define the location of the freeform box. Click and drag the side-arrow of the freeform box. Creating the Freeform feature 1. On the Browser window, click the XZ Plane. A plane appears on the XZ Plane. Click on top portion of the extruded feature. A plane appears tangent to the extruded feature. Click and drag the front arrow of the freeform box.
Start a sketch on the new plane. Place a point on the sketch plane and add dimensions to position it. Click OK to create the freeform shape. Click and drag the top arrow to increase the height of the freeform box.
Editing the Freeform Shape On the Box dialog, type-in 4, 1, and 2 in the Faces boxes, respectively. Hold the Ctrl key and click on top faces of the freeform shape. Additional Modeling Tools 8. Click on the arrow pointing upwards. Drag it downwards. Click OK on the Edit Form dialog.
Click Finish Freeform on the ribbon. Create another Freeform box 7. Hold the Ctrl key and click on the two edges at the front. On the Browser window, click the XY Plane. Click on the vertical portion of the sweep feature to create a plane tangent to it. Place a point and add dimensions to it.
Save and close the file. Start a new part file 1. Activate the Freeform Box tool. Select the new plane and click on the sketch point. On the Box dialog, type-in 27, 16, and 3 in the Length, Width, and Height boxes, respectively.
Click OK, and then click Finish Freeform. Click on the YZ Plane. Click the origin point of the sketch to define the center point of the circle. Move the pointer and type-in 0. Type-in 3 in the Distance box and press Enter. Type-in 6 in the Polygon dialog. Move the pointer vertically upward. You will notice that a dotted trace line appears between the origin point and the pointer.
Click to create the polygon. Click Done on the dialog. Activate the Line tool and select the vertices of the polygon. Creating the second feature 1. Click the sketch origin. Click on the cylindrical face of the model geometry. On the Thread dialog, uncheck the Full Length option and type-in 1. Activate the Dimension tool and create a dimension, as in figure.
Click the Specification tab to specify the thread settings. Click OK to add the thread. Activate the Extrude tool and select the sketch, if not already selected. On the Extrude dialog, type-in 0. Use the Direction 1 or Direction 2 buttons to make sure that the polygon is extruded toward left.
Now, you will create different variations of the bolt created in the previous section. This opens the Parameters dialog. On the Parameters dialog, click in the first cell of the Model Parameters table, and type-in Diameter. Likewise, change the names of other parameters. Click Done on the Parameters dialog. On the Browser window, click the right mouse button on the Extrusion1 and select Show Dimensions.
You will notice that the dimensions are shown along with the names. Additional Modeling Tools values 5, 0. This creates the second version of the bolt. This opens the iPart Author dialog. In this dialog, you will define the parameters to create other versions of the model geometry.
In the third row of the table, type-in new values in 2, 0. This creates the third version of the bolt. Now, you have to set the default version of the bolt. The table at the bottom of this dialog shows the parameters for the iPart factory. You will notice that the renamed parameters are automatically added to the table.
If you want to add more parameters to the table, then select them from the section located at the left side. Click the arrow button pointing towards right. Likewise, if you want to remove a parameter from the table, then select it from the right side section and click the arrow pointing toward left.
Click the right mouse button on the third row of the table and select Set As Default Row. Now, click the right mouse button on the table and select Insert Row. Notice that a new row is added to the table. Click OK to close the dialog. Notice that the default version of the bolt changes. Likewise, insert another row. In the Bowser Bar, you will notice that the Table item is added. Expand the Table item in the Browser Window In the second row of the table, type-in new Additional Modeling Tools to view the different variations of the iPart.
Notice that the activated version of the iPart is designated by a check mark. If you want to edit the table using a spreadsheet, then click the right mouse button on Table and select Edit via Spreadsheet. Double-click on any other version of the iPart to activate it. Now, modify the values in the spreadsheet and close it. A message pops up asking you to save the changes.
Click Save to save the changes. If you want to save anyone of the iPart versions as a separate part file, then click the right mouse button on it and select Generate Files. If you want to make changes to any version of the bolt, then click the right mouse button on it and select Edit table.
Creating the First Feature 1. Select the right endpoint of the horizontal line. Move the cursor vertically downwards and click to define the second point. Move the pointer towards right and click on the horizontal axis line. Open a new Autodesk Inventor part file using the Standard.
Select the XZ Plane. Click in the second quadrant, move the cursor horizontally toward right, and then click to create a horizontal line, as shown. Likewise, create another three-point arc and horizontal line, as shown.
Create a vertical construction from the origin point. Also, add the Vertical constrain between the origin and center point of the arc. Select the two arcs and the construction Set the Distance to 3. Click the More tab and set the Taper angle to Click the OK button.
Likewise, create a horizontal construction line from the origin point, and then make the two horizontal lines symmetric about it. Click the Extrude 8. On the Extrude dialog, set the Output type to Surface. Set the Extents type to Distance. Select the Symmetric button. Extrude the sketch up to 17 in distance. Click the Slice Graphics button at the bottom of the window or press F7 on the keyboard.
Replacing the top face of the model with the surface 1. Apply dimensions to the spline, as shown below.
Tutorial Archive | Inventor | Autodesk Knowledge Network.Learn Autodesk Inventor Basics | SpringerLink
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