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Making Your CAM Journey Easier with Fusion 360

You're reading from  Making Your CAM Journey Easier with Fusion 360

Product type Book
Published in Mar 2023
Publisher Packt
ISBN-13 9781804612576
Pages 464 pages
Edition 1st Edition
Languages
Concepts
Author (1):
Fabrizio Cimò Fabrizio Cimò
Profile icon Fabrizio Cimò

Table of Contents (26) Chapters

Preface 1. Part 1 – Implementing Turning Operations in Fusion 360
2. Chapter 1: Getting Started with Turning and Its Tools 3. Chapter 2: Handling Part Setup for Turning 4. Chapter 3: Discovering the Tool Library and Custom Tools 5. Chapter 4: Implementing Our First Turning Operation 6. Chapter 5: Discovering More Turning Strategies 7. Part 2 – Milling with Fusion 360
8. Chapter 6: Getting Started with Milling and Its Tools 9. Chapter 7: Optimizing the Shape of Milled Parts to Avoid Design Flaws 10. Chapter 8: Part Handling and Part Setup for Milling 11. Chapter 9: Implementing Our First Milling Operations 12. Chapter 10: Machining the Second Placement 13. Part 3 – Laser Cutting Using Fusion 360
14. Chapter 11: Getting Started with Laser Cutting 15. Chapter 12: Nesting Parts for Laser Cutting 16. Chapter 13: Creating Our First Laser Cutting Operation 17. Part 4 – Using Fusion 360 for Additive Manufacturing
18. Chapter 14: Getting Started with Additive Manufacturing 19. Chapter 15: Managing the Limitations of FDM Printers 20. Chapter 16: Printing Our First Part 21. Chapter 17: Understanding Advanced Printing Settings 22. Part 5 – Testing Our Knowledge
23. Chapter 18: Quiz 24. Index 25. Other Books You May Enjoy

Choosing part placements

When studying part placements, most of the time, we can follow different paths, but some of them may be more complex than others. I’m going to explain what I think is the best solution regarding our specific example, but it may not be the only solution according to the type of machine at our disposal and the holding fixture we intend to use.

So, now that we have seen the part we plan to create in Figure 8.1, we have to imagine how to move from a stock of 110 x 110 x 45 mm to the final shape. As we discovered from the drawing, we have to machine both sides of the stock as the features will appear on both sides.

Since most milling operations have to be performed on the rounded side, I would machine this side last:

Figure 8.2: Part placements

Figure 8.2: Part placements

As you can see in Figure 8.2, during the first placement (labeled as #1), I plan to perform the following operations:

  • Back side facing
  • Circular slot milling
  • Drilling...
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