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Fusion 360 milling
Fusion 360 milling











Fusion 360 and its integrated CAD/CAM platform make setting up and programming multi-part fixtures a breeze.

fusion 360 milling

Fusion 360, on the other hand, offers a simple but powerful workflow to transform milling toolpaths into positional 5-axis machining. Many 5-axis CAM software packages are too expensive or complicated to use effectively. To see positional multi-axis applications, refer to the positional multi-axis video library.

fusion 360 milling fusion 360 milling

Basically, the A-axis is the rotation around the X-axis the B-axis is the rotation around the Y-axis, and the C-axis is the rotation around the Z-axis. The A, B, and C axes are labeled alphabetically in correlation to X, Y, and Z. 5-axis machining, on the other hand, uses a mobile cutting tool or part that can travel across the X, Y, and Z axes while also rotating around the A and B axes. 3+2 machining involves locking the cutting tool or part at a specific angle determined by the rotational axes (A and B) using a 3-axis program. Often, the 3+2 machining process requires the engineer to reposition the cutting tool between cutting operations.

fusion 360 milling

What is 3+2-Axis (5-Axis Positional) Machining? Let’s dive into what this term means and what Fusion 360 offers in this space. Positional 5-axis milling capabilities offer many advantages, such as simplifying job setups and streamlining the manufacturing process. 3+2 (5-axis positional) milling can significantly reduce machine setup times between operations by streamlining toolpaths in Fusion 360. Autodesk Fusion 360 allows high-efficiency toolpaths within the 3+2 milling (5-axis positional) environment thanks to features like its Machining Extension.Ī knowledgeable engineer using a computer numerical control (CNC) machine paired with computer-aided manufacturing ( CAM) and computer-aided design ( CAD) software, like Autodesk Fusion 360, can create innovative products for a variety of industries.













Fusion 360 milling