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AXD Series
For steels |
For stainless steels |
For cast iron |
For non-ferrous metal |
For difficult to cut material |
For hardened material |
For finish cutting |
For medium cutting |
For rough cutting |
For Machining of Aluminium and Titanium Alloys
Multi functional milling cutter for high speed & performance machining of aluminum and titanium alloys*.
*For titanium alloys is only AXD4000.
Multi Functional Milling
AXD Series for excellent multi-functional performance. Ford sync update download uk.
Designed for high speed, efficiency and safety
At high spindle speeds the double clamping screws prevent insert displacement caused by centrifugal force. The double clamping offers both reliability and safety.
High Spindle Speeds Possible
Safe and reliable high spindle speed milling can be achieved due to the use of the double screw clamping and Mitsubishi Material’s proprietary “Anti Fly Insert” mechanism (Double AFI).
To prevent vibration under high spindle speeds the holder is balanced to G6.3 or better at 10000min-1, according to the ISO1940 standard. (The holder is balanced without the inserts and the screws in place)
Al-Ti-Cr-N accumulated coating series-MP9120
DLC coated LC15TF
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DLC coating prevents the chips from welding on the insert rake face providing improved surface finishes and high-efficiency machining.
LC15TF can be used for both wet and dry machining.
LC15TF can be used for both wet and dry machining.
TF15
Micro-grain cemented carbide with superior resistance to wear and fracturing. TF15 ensures stable cutting and efficient machining of aluminium alloy. The special mirror treatment on the rake face prevents chip welding for reliability and longer tool life.
It is necessary to choose the best insert according to the cutting conditions. Please select an insert from the tables below.
1st recommendation for stable cutting condition is the GL breaker with a strong cutting edge.
1st recommendation for stable cutting condition is the GL breaker with a strong cutting edge.
Selection of insert according to the feed per tooth and the required cutting depth
Selection of insert according to the width of cut and the required cutting depth
1st recommendation for machining aluminium alloys is GL breaker.
Under high-load conditions such as deep or high feed cutting, it is advisable to use the GM breaker.
Under high-load conditions such as deep or high feed cutting, it is advisable to use the GM breaker.
Selection of insert according to wear resistance
Excellent Wall Accuracy
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Specially designed G-class inserts with a helical cutting edge for excellent wall accuracy.
Low Resistance Inserts
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An optimised helical flank and flank angle offers cutting edge strength and provides a large rake angle to reduce cutting resistance. Additionally a convex cutting edge is incorporated to ensure effective chip flow.
Comparison of surface finishes
Improved surface finishes by reducing feed mark
Improved surface finishes by reducing feed mark
Cutting performance on Ti-6AL-4V
Stable tool life under high-load conditions
Stable tool life under high-load conditions
Cutting of aluminium alloy cast iron : Si content 9%
Mitsubishi Carbide Inserts
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2.3 times longer tool life due to tougher cutting edge & PVD coating