High Processing Speed Carbide Endmills
Place of Origin:Sichuan China (Mainland) | Brand Name:Ferre | Model Number:yt14, yt15,yt5,yw1,yw2,yw3,yt05, yg6, yg8 | Material:Carbide |
Diameter:Outside Diameter:1-20mm | Type:End Mill | Coating:TiN,TiCN,TiAlN | Overall Length:50-100mm |
Carbide endmills application::CNC machining centers, CNC engraving machine | Carbide endmills flute length::3-10mm | Carbide endmills shank diameter::4-20mm |
High Processing Speed Carbide Endmills
Carbide Endmills Description:
Endmills are shank cutters used for profile milling, spotting, facing, slotting and pocketing
and capable of machining in axial and radial directions. They are the most frequently used
tools in machining varied and complicated forms and shapes not achievable by any other
machining operations. "Endmills" are especially made of either high speed steel or solid
carbide. But, for precision milling operations, solid Carbide Endmills have been the
preferred material tool because of its high-wear resistant quality and accuracy at very high rpm.
There are several types of Endmills. Depending on the cutting conditions, Endmills can be
ordered in standard two-Flutes, or three, four, five and six fluted Endmills. Endmills can be
coated with TiN, TiCN, or TiAlN for better performance and precision finish.
Endmills can be used in Conventional Milling Machines, CNC (Computer Numerically
Controlled Machines)Milling Machines or NC (Numercially Controlld machines) Milling
Machines and in Machining Center Machines.
Carbide Endmills Application:
1) CNC machining centers, CNC engraving machine.
2) Fit to the ordinary milling machining to process hard and uncomplex heat-treated material
Carbide Endmills Categories:
1) Solid Carbide End Mills
2) Straight Shank End Mills for Keyseat
3) Taper Shank End Mills
4) Carbide Saw Blade Cutters
5) Carbide Machine Reamers Cutter
6) Carbide Ball End Mills and more...
Carbide Endmills Specification:
Carbide Endmills Display:
Q:What is cemented carbide ?
A: Cemented carbide is a hard material used in machining tough materials such as carbon steel or stainless, as
well as in situations where other tools would wear away, such as high-quantity production runs. Most of the time,
carbide will leave a better finish on the part, and allow faster machining. Carbide tools can also withstand higher
temperatures than standard high speed steel tools.
Q:What are the key properties of cemented carbides I should be concerned with when selecting a grade for my application?
A: The key properties of cemented carbides that define their performance level for different applications include
abrasion resistance (directly related to the hardness of the grade), fracture strength, and fracture toughness.
In general, the abrasion resistance or hardness of any grade is inversely proportional to its fracture toughness.
Very often grade selection involves finding the best compromise between abrasion resistance and toughness.
In some instances strength and corrosion resistance can be important factors in the grade selection process.
Q: Which properties are important in metal cutting applications?
A: Depending upon the type of metalcutting operation (turning, milling, drilling, etc.), different combinations of
properties is needed in order to obtain optimum results. For example, in turning and drilling applications the
cutting tool is in continuous contact with the workpiece. Hence, for these applications, abrasion resistance
and strength are the most important properties to consider. However, in operations such as milling, which
invariably involve interrupted cutting, and hence high impact forces, toughness can be an important factor.
Grades employed for metalcutting applications are usually based on fine to medium hard phase grain sizes
(0.5 to 1.5 mm) and low to medium Co contents (6 to 15 wt.%).
Q: Which grades are useful in metal forming applications?
A: In contrast to metalcutting (where abrasion resistance and strength are of paramount importance),
cemented carbides used in metalforming applications will invariably be subject to high impact and shock forces.
Hence, grades used for metalforming applications must possess high toughness levels with adequate abrasion
resistance and strength. Grades employed for metalforming applications are typically based on coarse grain
sizes (3 to 8 mm) and high binder contents (15 to 30 wt. %).
Q: Which grades are useful in earth drilling or boring applications?
A: In many respects the characteristics of the grades employed for earth drilling and boring represent a
compromise between the characteristics that are important for metalcutting and those that are important
for metalforming applications. Grades for earth drilling and boring must possess the highest toughness
levels for any given abrasion resistance level, while simultaneously possessing adequate strength levels.
The best compromise is usually arrived at by using grades that are based on coarse grain sizes (3 to 8 mm)
and relatively low Co levels (6 to 16 wt. %).
Q: How can I choose the most suitable products for my applications?
A: 1.Correct installation site depends on specific size and drawings. Especially for dies processing,
drawings can ensure the finished products are qualified.
2. Processing objects and working environment is determined by cemented carbide grades.
Products' lifetime can be greatly extend if grades are right.
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Packaging Detail:Carbide endmills Packing:1) Carbide endmills inner packing: plastic boxes;2) Carbide endmills outer packing: wooden cases. |
Delivery Detail:Carbide endmills can be delivered within 20 days. |