Machine tap HSCo Longlife blue ring TiN through hole DIN 371/376
Machine tap HSCo Longlife blue form B
MATAP-THRGHO-HSCO-DIN371-TIN-BLUE-M5
ZEBRA
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Up to two times longer service life and up to 50 % higher cutting speed compared to similar uncoated tools
Optimised TiN coating
Product packaging made of 100 % PCR (recycled plastic from household waste), 100 % recyclable
- Sufficient coolant and lubricant must be added when cutting threads.
- For machine taps and materials, see the overview tables
Datasheets(X)
Before reversing the screw tap, make sure to completely remove the spiral point tap of the tool from the drill hole. Failure to do so may cause the cutting edges or the tool to break.
Thread type | Metric thread |
Material to be processed | Steel |
Hole type | Clearance hole ≤ 3xD |
Suitable for machine type | Milling/drill center, Pedestal drilling machine |
Quality | ZEBRA-Premium |
Thread type x nominal diameter | M5 |
Pitch | 0.8 mm |
Length | 70 mm |
Shank diameter | 6.0 mm |
Size of square | 4.9 mm |
DIN | 371 |
Cutting material | HSCo |
Surface | TiN |
Form | B |
Core hole diameter | 4.2 mm |
Shank style | Cylindrical with square drive |
Tolerance of screw taps | ISO 2 (6H) |
Suitable for tensile strength up to | 1000 N/mm² |
Service life (points system) | 4 of 4 points |
Trueness to gauge (points system) | 4 of 4 points |
Versatility (points system) | 2 of 4 points |
Cutting behaviour (points system) | 3 of 4 points |
Chip formation (points system) | 3 of 4 points |
Material of sub-group | General structural steels, Non-alloyed tempering steels, Alloyed tempering steels, Tool steels, High-speed steels |
Key | |
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. |
Cutting values for HSCo Longlife machine taps | ||||||
For M20 | ||||||
Material designation | Tensile strength | M20 | ||||
vc | n | f | ||||
from | to | from | to | |||
General structural steels | ≤ 850 N/mm² | 20 | 50 | 318 | 796 | 2,00 |
Unalloyed hardened steels | ≤ 850 N/mm² | 20 | 50 | 318 | 796 | 2,00 |
Low-alloy hardened steels | ≤ 850 N/mm² | 20 | 50 | 318 | 796 | 2,00 |
Unalloyed hardened steels | ≤ 1,000 N/mm² | 20 | 50 | 318 | 796 | 2,50 |
Low-alloy hardened steels | ≤ 1,000 N/mm² | 20 | 50 | 318 | 796 | 2,50 |
Alloyed hardened steels | ≤ 1,200 N/mm² | 5 | 20 | 80 | 318 | 2,50 |
Cast iron | ≤ 300 HB | 20 | 50 | 318 | 796 | 2,50 |
Nodular graphite and malleable iron | ≤ 350 HB | 20 | 50 | 318 | 796 | 2,50 |
Cutting values for HSCo Longlife machine taps | ||||||||||||
For M3-M5 | ||||||||||||
Material designation | Tensile strength | M3 | M4 | M5 | ||||||||
vc | n | f | n | f | n | f | ||||||
from | to | from | to | from | to | from | to | |||||
General structural steels | ≤ 850 N/mm² | 20 | 50 | 2,122 | 5,305 | 0,50 | 1,592 | 3,979 | 0,70 | 1,273 | 3,183 | 0,80 |
Unalloyed hardened steels | ≤ 850 N/mm² | 20 | 50 | 2,122 | 5,305 | 0,50 | 1,592 | 3,979 | 0,70 | 1,273 | 3,183 | 0,80 |
Low-alloy hardened steels | ≤ 850 N/mm² | 20 | 50 | 2,122 | 5,305 | 0,50 | 1,592 | 3,979 | 0,70 | 1,273 | 3,183 | 0,80 |
Unalloyed hardened steels | ≤ 1,000 N/mm² | 20 | 50 | 2,122 | 5,305 | 0,50 | 1,592 | 3,979 | 0,70 | 1,273 | 3,183 | 0,80 |
Low-alloy hardened steels | ≤ 1,000 N/mm² | 20 | 50 | 2,122 | 5,305 | 0,50 | 1,592 | 3,979 | 0,70 | 1,273 | 3,183 | 0,80 |
Alloyed hardened steels | ≤ 1,200 N/mm² | 5 | 20 | 531 | 2,122 | 0,50 | 398 | 1,592 | 0,70 | 318 | 1,273 | 0,80 |
Cast iron | ≤ 300 HB | 20 | 50 | 2,122 | 5,305 | 0,50 | 1,592 | 3,979 | 0,70 | 1,273 | 3,183 | 0,80 |
Nodular graphite and malleable iron | ≤ 350 HB | 20 | 50 | 2,122 | 5,305 | 0,50 | 1,592 | 3,979 | 0,70 | 1,273 | 3,183 | 0,80 |
Cutting values for HSCo Longlife machine taps | ||||||||||||
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 | |||||
General structural steels | ≤ 850 N/mm² | 20 | 50 | 531 | 1,326 | 1,75 | 455 | 1,137 | 2,00 | 398 | 995 | 2,00 |
Unalloyed hardened steels | ≤ 850 N/mm² | 20 | 50 | 531 | 1,326 | 1,75 | 455 | 1,137 | 2,00 | 398 | 995 | 2,00 |
Low-alloy hardened steels | ≤ 850 N/mm² | 20 | 50 | 531 | 1,326 | 1,75 | 455 | 1,137 | 2,00 | 398 | 995 | 2,00 |
Unalloyed hardened steels | ≤ 1,000 N/mm² | 20 | 50 | 531 | 1,326 | 1,75 | 455 | 1,137 | 2,00 | 398 | 995 | 2,00 |
Low-alloy hardened steels | ≤ 1,000 N/mm² | 20 | 50 | 531 | 1,326 | 1,75 | 455 | 1,137 | 2,00 | 398 | 995 | 2,00 |
Alloyed hardened steels | ≤ 1,200 N/mm² | 5 | 20 | 133 | 531 | 1,75 | 114 | 455 | 2,00 | 99 | 398 | 2,00 |
Cast iron | ≤ 300 HB | 20 | 50 | 531 | 1,326 | 1,75 | 455 | 1,137 | 2,00 | 398 | 995 | 2,00 |
Nodular graphite and malleable iron | ≤ 350 HB | 20 | 50 | 531 | 1,326 | 1,75 | 455 | 1,137 | 2,00 | 398 | 995 | 2,00 |
Cutting values for HSCo Longlife machine taps | ||||||||||||
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 | |||||
General structural steels | ≤ 850 N/mm² | 20 | 50 | 1,061 | 2,653 | 1,00 | 796 | 1,989 | 1,25 | 637 | 1,592 | 1,50 |
Unalloyed hardened steels | ≤ 850 N/mm² | 20 | 50 | 1,061 | 2,653 | 1,00 | 796 | 1,989 | 1,25 | 637 | 1,592 | 1,50 |
Low-alloy hardened steels | ≤ 850 N/mm² | 20 | 50 | 1,061 | 2,653 | 1,00 | 796 | 1,989 | 1,25 | 637 | 1,592 | 1,50 |
Unalloyed hardened steels | ≤ 1,000 N/mm² | 20 | 50 | 1,061 | 2,653 | 1,00 | 796 | 1,989 | 1,25 | 637 | 1,592 | 1,50 |
Low-alloy hardened steels | ≤ 1,000 N/mm² | 20 | 50 | 1,061 | 2,653 | 1,00 | 796 | 1,989 | 1,25 | 637 | 1,592 | 1,50 |
Alloyed hardened steels | ≤ 1,200 N/mm² | 5 | 20 | 265 | 1,061 | 1,00 | 199 | 796 | 1,25 | 159 | 637 | 1,50 |
Cast iron | ≤ 300 HB | 20 | 50 | 1,061 | 2,653 | 1,00 | 796 | 1,989 | 1,25 | 637 | 1,592 | 1,50 |
Nodular graphite and malleable iron | ≤ 350 HB | 20 | 50 | 1,061 | 2,653 | 1,00 | 796 | 1,989 | 1,25 | 637 | 1,592 | 1,50 |