The integral impeller is a typical five-axis machining part, and how to compile a correct and efficient machining program is its key technology. The five-axis impeller processing technology is complex and precise. It is the core technology of my country's industrial production and is not easy to master. Below, the editor will give you a brief introduction to the processing process of Xiehe machined impeller.
Five-axis machining of impeller machining makes programming of complex workpieces simple. Machining with the cutting edge results in a smoother machined surface than machining with the base edge of the tool. Suitable for finishing machining of complex cavity workpieces in the aerospace industry. It provides a dedicated function that can effectively prevent overcutting at the bottom of the tool and part cavity, and program a variety of tools, including tapered tools, for transverse cutting based on surface or wireframe data.
Mastercam's five-axis linkage roughing adopts fully automatic cutter axis control, which avoids drastic changes in the cutter axis during the roughing process. For some workpieces, we can program a three-axis tool path: and then convert it into a five-axis tool path in Mastercam's multi-axis module. The five-axis tool path automatically generates the tool axis, optimizes the original tool path data, and includes complete five-axis collision detection. The flexible use of three axes and five axes can simplify the difficulty of five-axis programming and increase the programming speed. This function supports the conversion of all three-axis tool paths, and the generated five-axis tool paths are fast, safe and reliable, without overcutting problems.
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