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We will use the REVSURF command to create a mesh model of the shaft shown in Fig 43-2 1 Start AutoCAD and use the soliddwt template le to create a new drawing named shaftdwg 2 Use a polyline to create the pro le of the shaft, as shown in Fig 43-3 Position point 1 on the ground plane at x = 1, y = 1 Make sure the polyline is closed Omit the dimensions
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Fig 43-2
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Part 9: Solid Modeling
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Wohlers: Applying AutoCAD 2010
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IX Solid Modeling
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43 Basic Modeling
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The McGraw Hill Companies, 2010
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Begin at point 1, work counterclockwise, and take advantage of polar tracking Set the polar tracking angle to 45 , which will help you create the 45 chamfer 3 Create a line that passes through points 1 and 2 4 View the pro le from the SW Isometric viewpoint and zoom out slightly 5 Enter ZOOM and 7x (You can also use the wheel button on the mouse to zoom out) You should now see a view similar to the one in Fig 43-4
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Fig 43-4
43: Basic Modeling
Wohlers: Applying AutoCAD 2010
IX Solid Modeling
43 Basic Modeling
The McGraw Hill Companies, 2010
6 Enter DELOBJ and 0
DELOBJ is the Delete Object system variable With the default value of 1, the 2D pro les used to create solids are deleted The DELOBJ value of 0 retains
the pro le, which is what we wish to do 7 Enter SURFTAB1 and 20
PRIMITIVES
SURFTAB1 is a system variable that controls the number of tesselations on a mesh model in the direction of revolution The default value is 6, which
would produce a revolved mesh with a hexagonal cross section This activates the REVSURF command 9 Select the polyline and press ENTER 10 Pick the line as the axis of rotation
8 Pick the Revolved Surface Mesh button on the Primitives panel
11 Press ENTER twice to select the default 0- to 360-degree angle of revolution The mesh model of the shaft generates on the screen, as shown in Fig 43-2 on page 560 Note that you could have used the REVOLVE command to produce a solid model, instead of a mesh model, from the polyline 12 Save your work and close the drawing
Extrusion
The solid model of an aluminum casting shown in Fig 43-5 was created using the EXTRUDE command This command allows you to extrude, or add depth to, a closed area The EXTRUDE command works on closed 2D objects such as planar 3D faces, closed polylines, polygons, circles, ellipses, closed splines, and donuts It is not possible to extrude objects contained within a block or a polyline that has a crossing or self-intersecting segment 1 Begin a new drawing using the soliddwt template le 2 Using the PLINE command s Arc and Line options, approximate the size and
Fig 43-5
Part 9: Solid Modeling
Wohlers: Applying AutoCAD 2010
IX Solid Modeling
43 Basic Modeling
The McGraw Hill Companies, 2010
Fig 43-6
shape of the casting shown in Fig 43-6 The casting s overall size is 625 625 Pick the points in the order shown Do not place the numbers on the drawing 3 Save your work in a le named extrudedwg 4 Select the SW Isometric viewpoint 5 Pick the Extrude button on the Modeling panel 6 Select the polyline and press ENTER 7 Move the crosshairs up and down in the drawing area and notice that AutoCAD displays the height of the extrusion dynamically 8 Type T to activate the Taper angle option and enter 5 (for 5 degrees of taper) 9 Enter 75 for the height of the extrusion An extruded solid model appears, with a height of 75 and sides tapered at 5 , as shown in Fig 43-5 10 In an open area of the screen, draw an arc and a circle of arbitrary size on the ground plane 11 Use the EXTRUDE command to extrude both objects 15 inches Do not taper the extrusions Your drawing should look similar to the one in Fig 43-7 on page 564
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