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Tungsten Carbide End Mills for Stainless High Speed Milling Cutter
Discription:
High performance end mills for stainless steels are designed to
minimize the affects of work hardening materials. These end mill
cutters have unique helix angles and optimized flute geometries to
maximize metal removal rates in stainless steels and high
temperature alloys.
The variable flute end mill cutters are also very good performers
in stainless steel and work hardening materials.
Solid Carbide End Mills are made from ultra micro-grain carbide
will produce with quality surfaces in cast iron, sintered
materials, aluminum and some steels. The unique characteristics of
the newer ultra fine grain materials will support cutting action in
carbide end mills at high rates with extremely good wear
resistance. Coatings to insure smooth finish enhance the quality of
the surfaces milled and improve the heat resistance insuring long
tool life.
Specifications of square head End Mills:
Description | D | Lc | L | d | z | |
Standard Length | 1.0~6.0 | 3.0~16 | 50 | 3~6 | 4 | |
6.0~8.0 | 16~20 | 60 | 6~8 | 4 | ||
8.5~12.0 | 20~30 | 75 | 10~12 | 4 | ||
14.0~25.0 | 40~50 | 100 | 14~25 | 4 | ||
With Long Flutes Length | 3.0~6.0 | 4.0~6.0 | 75 | 12~21 | 4 | |
3.0~12.0 | 4.0~12.0 | 100 | 12~45 | 4 | ||
6.0~25.0 | 6.0~25.0 | 150 | 45~75 | 4 | ||
With Long Shank Length | 6.0~8.0 | 16~20 | 75 | 6~8 | 4 | |
8.0~12.0 | 16~30 | 100 | 6~12 | 4 | ||
10.0~12.0 | 25~30 | 150 | 10~12 | 4 | ||
With Stub Length | 4.0~6.0 | 2.0~9.0 | 50 | 1~6 | 4 | |
8.0 | 10~12 | 60 | 8 | 4 | ||
10.0 | 15 | 75 | 10 | 4 | ||
12.0 | 18 | 75 | 12 | 4 | ||
16 | 24 | 100 | 16 | 4 |
Coating:
Coating Sheet | |||||
Coating Type | TiAIN | ALTiN | TiSiN | Nano | |
Hardness(HV) | 2800 | 3200 | 3600 | 42(GPA) | |
Thickness(UM) | 2.5-3 | 2.5-3 | 3 | 3 | |
Oxidation Temp(°) | 800 | 900 | 1000 | 1200 | |
Friction Coeffient | 0.3 | 0.3 | 0.45 | 0.4 | |
Color | Violet | Black | Copper | Blue |
TiAIN
A special multilayer coating for edge retention and corrosion
resistance when used on a wide range of materials including iron
based, hardened steels, and stainless steels. Typically TiAIN is
used in applications with lower cutting speeds than TiSiN and ALTiN
but often improves the tool's lifetime by a factor of three or
more.
ALTiN
A general purpose coating that offers improved wear resistance to
abrasive, adhesive, or difficult to machine materials such as cast
iron, aluminum alloys, steels, copper and more. This is a common
used substitute when the advantages of TiAIN cannot be used, as in
applications that cannot generate the speeds and feeds required for
higher cutting temperatures. ALTiN is harder and more impact
resistant than TiAIN and can improve tool life.
TiSiN
This is a high performance coating for milling, tapping and
drilling in stainless steels, carbon steels, alloy steels, and cast
iron. This coating is extremely heat resistant and can be used with
or without coolant. It is exceptional in difficult to machine
materials where adhesive wear is particularly high and can be run
at much higher speeds and feeds than all other coatings.