HSCo TiN Speedtap Inox thread former with internal cooling
HSCo TiN Speedtap Inox thread former with IC
THRFORM-HSCO-DIN2174-SPEEDTAP-IC-M10
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- Caution: A special predrilling diameter larger than in thread cutting and with tighter tolerances is required for thread forming! The suitable core hole diameter is stored as a technical characteristic for all thread formers.
- In thread forming, the main job of the cooling lubricant is lubrication. The more lubrication used with the highest possible grease content, the longer the service life. The lubrication also affects the surface quality of the thread!
- Please note that for thread forming, you will need approx. two times as much performance (torque) compared to thread tapping. The means that capacity should be considered when using thread-cutting devices.
Datasheets(X)
Product code | 4678 |
Thread type | Metric thread |
Material to be processed | Steel, Stainless steel, Copper, Brass, Aluminium, Plastic |
Hole type | Clearance/blind hole ≤ 3xD |
Suitable for machine type | Milling/drill center |
Thread type x nominal diameter | M10 |
Pitch | 1.5 mm |
Length | 100 mm |
Thread length | 24 mm |
Effective length | 39 mm |
Shank diameter | 10 mm |
Size of square | 8 mm |
Number of cutting edges | 6 PCS |
Core hole diameter | 9.3 mm |
Cutting material | HSCo |
DIN | 2174 |
Surface | TiN |
Form | C |
Shank style | Cylindrical with square drive |
Tolerance of thread former | 6HX |
Suitable for tensile strength up to | 1200 N/mm² |
Coolant supply | Internal |
Material of sub-group | General structural steels, Non-alloyed tempering steels < 1000 N/mm², Alloyed tempering steels < 1000 N/mm², Nitriding steels < 1300 N/mm², Stainless steels < 850 N/mm², Stainless steels > 850 N/mm², Copper, Brass, Aluminium, Plastics |
For M6-M10 | ||||||||||||
Material designation | Tensile strength | M6 | M8 | M10 | ||||||||
vc | n | f | n | f | n | f | ||||||
from | to | from | to | from | to | from | to | |||||
Steels | ||||||||||||
Steels | < 400 N/mm² | 20 | 30 | 1061 | 1592 | 1 | 1061 | 1194 | 1,25 | 637 | 955 | 1,5 |
Steels | < 850 N/mm² | 20 | 30 | 1061 | 1592 | 1 | 1061 | 1194 | 1,25 | 637 | 955 | 1,5 |
Steels | < 1100 N/mm² | 8 | 15 | 424 | 796 | 1 | 424 | 597 | 1,25 | 255 | 477 | 1,5 |
Steels | < 1300 N/mm² | 8 | 15 | 424 | 796 | 1 | 424 | 597 | 1,25 | 255 | 477 | 1,5 |
High-grade steels | ||||||||||||
Stainless steels | < 850 N/mm² | 10 | 20 | 531 | 1061 | 1 | 531 | 796 | 1,25 | 318 | 637 | 1,5 |
Stainless steels | > 850 N/mm² | 10 | 20 | 531 | 1061 | 1 | 531 | 796 | 1,25 | 318 | 637 | 1,5 |
Non-ferrous metals | ||||||||||||
Copper, brass | 20 | 40 | 1061 | 2122 | 1 | 1061 | 1592 | 1,25 | 637 | 1273 | 1,5 | |
Aluminium | 20 | 40 | 1061 | 2122 | 1 | 1061 | 1592 | 1,25 | 637 | 1273 | 1,5 |
Legend |
vc = cutting speed [m/min] |
f = feed [mm/r] |
n = rotation speed [rpm] |
The suggested cutting values are reference values and must be adapted to the respective conditions. |
For M12-M16 | ||||||||||||
Material designation | Tensile strength | M12 | M14 | M16 | ||||||||
vc | n | f | n | f | n | f | ||||||
from | to | from | to | from | to | from | to | |||||
Steels | ||||||||||||
Steels | < 400 N/mm² | 20 | 30 | 531 | 796 | 1,75 | 455 | 682 | 2 | 398 | 597 | 2 |
Steels | < 850 N/mm² | 20 | 30 | 531 | 796 | 1,75 | 455 | 682 | 2 | 398 | 597 | 2 |
Steels | < 1100 N/mm² | 8 | 15 | 212 | 398 | 1,75 | 182 | 341 | 2 | 159 | 298 | 2 |
Steels | < 1300 N/mm² | 8 | 15 | 212 | 398 | 1,75 | 182 | 341 | 2 | 159 | 298 | 2 |
High-grade steels | ||||||||||||
Stainless steels | < 850 N/mm² | 10 | 20 | 265 | 531 | 1,75 | 227 | 455 | 2 | 199 | 398 | 2 |
Stainless steels | > 850 N/mm² | 10 | 20 | 265 | 531 | 1,75 | 227 | 455 | 2 | 199 | 398 | 2 |
Non-ferrous metals | ||||||||||||
Copper, brass | 20 | 40 | 531 | 1061 | 1,75 | 455 | 909 | 2 | 398 | 796 | 2 | |
Aluminium | 20 | 40 | 531 | 1061 | 1,75 | 455 | 909 | 2 | 398 | 796 | 2 |
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