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R220.21-02.00-R230-4A MOLD & DIE MILLING
R220.21-02.00-R230-4A MOLD & DIE MILLING
SEC02842027
02842027
788.00
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- ANSI Code: R220.21-02.00-R230-4A
- Arbor Hole Diameter: 42 mm, 42mm
- Country of Origin: FR
- Cutter Diameter Metric: 36.1mm
- Cutting Angle: 21.3 deg, 21.3°
- Hand Direction: Right Hand
- Head Length: 40 mm, 40mm
- Insert Style: 218.21, 218.21-230
- ISO Code: R220.21-02.50-R230.5A
- Manufacturer Name: Seco Tools
- Maximum Depth of Cut: 1.8 mm, 1.8mm
- Number of Inserts: 4
- Overall Length: 40 mm, 40mm
- Series: Highfeed 6
- Shank Diameter: 42 mm, 42mm
- Shank Type: Arbor
- Through Coolant (Yes/No): Yes
- Type: Double Sided Insert
- Has Attributes: Yes
- Has Image: Yes
High feed milling is a milling method that permits up to three times faster machining than conventional methods. It pairs shallow depth of cut with high feed per tooth which gives higher metal removal rates and results in more parts being machined. The cutting forces are directed at the machine spindle in the axial direction, which means greater stability and reduced vibrations, extending tool life. Additionally, High feed milling tools save time by avoiding semi-finishing and reducing tool changes. Our expansive range of High feed milling solutions meets all application needs. Plus, with the help of Seco's knowledgeable and experienced team, you can seamlessly implement high speed milling techniques to increase your productivity and competitiveness. Face milling with the High feed milling method is perfect for creating a good platform for further machining operations or a final finishing. In most applications, you'll often get such fine tolerances that only final finishing is needed. High feed milling is also very practical for copy mill machining uneven surfaces and is highly effective in cavity milling and creating molds and dies. With copy milling and cavity milling, the application indicates the necessary tool diameter, making selecting the right tool easy. In helical interpolation, High feed milling is suitable for making large diameter holes because it often means skipping pre-machining or pre-drilling. It's also commonly used for plunging operations, especially when machining difficult materials such as titanium and other light alloys.
- Item Features
- https://www.youtube.com/embed/hjVWNMUgyXs?enablejsapi=1&autoplay=true&fs=1&rel=0