Modeling a coupling with SolIDWorks is a bit of a basic operation, except for the thread lines!

SolidWorks abbreviation (SW) is a new generation of Dassault introduced for the electrical industry design of mechanical 3D design tools. SolidWorks Chinese version of the use of a new parallel and serial product development environment and *** enjoy 3DCAD model, and is widely used in the design of parts, design of machinery and equipment, medical equipment, automotive, aerospace and other industries; SolidWorks can meet the user directly add a variety of auxiliary plug-ins, connected to a variety of NC programming. Industry; SolidWorks can meet the user directly in the software to add a variety of auxiliary plug-ins, connect a variety of NC programming software and directly print the model of the use of demand. About the power of solidworks, in fact, I believe that many partners also have a certain understanding, but for the mastery of the software as well as the use of the software, may be a lot of partners are still scratching their heads! It doesn't matter, if you want to learn how to use solidworks, you've come to the right place. A wealth of solidworks boutique video courses, take you one by one to break through the software basic to advanced operation

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Modeling a coupling with SolidWorks, except for the threaded line, other than some basic operations

This picture is modeled with SolidWorks2015, rendered with KeyShot8, the top 2 pictures. The original files are in the August 2, 2019 folder with X-T format files.

Modeling steps:

1. Draw concentric circles on the front view datum.

2. Stretch the camber to a depth of 24.8. (It's OK to reverse without points)

3. Draw rectangles on the right view datum. (Distance from edge: 7.265)

4. Stretch excision, isometric: 0.5, direction one: full penetration.

5. Mirror the stretch excision with the right view datum.

6. Display the temporary viewing axis.

7. Linear whole column, direction: temporary axis, spacing: 3.72, number two.

8. Draw rectangles in the upper viewing datum.

9. Stretch excision, Equal spacing: 0.5, Direction one: complete penetration.

10. Mirror the stretch excision to the bottom.

11. Linear array (stretch excision and mirrored features from previous step), spacing: 3.72, number: 2.

12. Linear Array, Pitch: 8.46, Qty: 2.

13. Still Linear Array (Stretch Removal and Mirror Features on the left), Spacing: 8.46, Qty: 2.

12. Rounded corners, radius: 0.5. (This step is a bit tricky, to point each edge line)

13. Rounded corners, radius: 0.1, select the face to be rounded.

14. Draw a circle on the right view datum.

15.Stretch to remove.

16. Chamfer.

17.Thread line, (this function is available after 2016 version)

Cylinder edge line: inner circle edge line;

Start position: right view datum,

Thread line method: cut thread line,

Mirror contour: Horizontal mirror image.

Trimming according to the start surface

Trimming according to the end surface

18. Circumferential Array (3 features), Angle: 90 degrees, Geometry Array tick.

19.Linear Array (Circumferential Array features from the previous step), Spacing: 17.8.

20.Finish. (The two pictures below are from the 2015 version, which doesn't have the threadline feature, so they are not drawn. If you want to draw, use the scanning excision on the line)

So, today's "SolidWorks modeling a coupling, in addition to the threaded line, the other are some basic operations" on the end of the sharing here! We must learn to see more, practice more, think more, learn more, I hope we can all learn solidworks soon! Here, but also for you to provide more courses to learn, click the link: