HSCo Multi Special MF thread machine tap for blind holes DIN 374
Machine tap, HSCo, multi DIN 374, form C
MATAP-BLIHO-HSCO-DIN374-MULTI-M10X1
ZEBRA
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For work in an extensive range of materials
The universal geometry allows processing of many different materials.
Long service life and good process reliability
The X allowance ensures an increased service life and process reliability.
Very good adhesion of coolants and lubricants as well as reduced tendency for build-up of materials
The vaporised surface enables coolants and lubricants to stick well and reduces the tendency for deposits to build up.
- Sufficient coolant and lubricant must be added when cutting threads.
- For the machine tap/material assignments, see the overview tables
Datasheets(X)
Thread type | Metric fine thread |
Material to be processed | Steel |
Hole type | Blind hole ≤ 2.5xD |
Suitable for machine type | Milling/drill center |
Quality | ZEBRA-Premium |
Thread type x nominal diameter | MF10 |
Pitch | 1 mm |
Length | 90 mm |
Shank diameter | 7 mm |
Size of square | 5.5 mm |
DIN | 374 |
Cutting material | HSCo |
Surface | Vaporised |
Form | C |
Core hole diameter | 9 mm |
Twist angle | 40° (right) |
Shank style | Cylindrical with square drive |
Tolerance of screw taps | ISO 2X (6HX) |
Suitable for tensile strength up to | 1000 N/mm² |
Service life (points system) | 2 of 4 points |
Trueness to gauge (points system) | 4 of 4 points |
Versatility (points system) | 3 of 4 points |
Cutting behaviour (points system) | 3 of 4 points |
Chip formation (points system) | 2 of 4 points |
Material of sub-group | General structural steels |
Cutting values | ||||||||||||
For MF8x1 - MF10x1.25 | ||||||||||||
Material name | Tensile strength | MF8x1 | MF10x1 | M10x1.25 | ||||||||
vc | n | f | n | f | n | f | ||||||
from | to | from | to | from | to | from | to | |||||
Steels | ||||||||||||
General structural steels | ≤ 850 N/mm² | 20 | 50 | 2122 | 5305 | 1,00 | 2122 | 5305 | 1,00 | 2122 | 5305 | 1,25 |
Unalloyed heat-treated steels | ≤ 850 N/mm² | 20 | 50 | 2122 | 5305 | 1,00 | 2122 | 5305 | 1,00 | 2122 | 5305 | 1,25 |
Low-alloy heat-treated steels | ≤ 850 N/mm² | 20 | 50 | 2122 | 5305 | 1,00 | 2122 | 5305 | 1,00 | 2122 | 5305 | 1,25 |
Unalloyed heat-treated steels | ≤ 1,000 N/mm² | 20 | 50 | 2122 | 5305 | 1,00 | 2122 | 5305 | 1,00 | 2122 | 5305 | 1,25 |
Low-alloy heat-treated steels | ≤ 1,000 N/mm² | 20 | 50 | 2122 | 5305 | 1,00 | 2122 | 5305 | 1,00 | 2122 | 5305 | 1,25 |
Alloyed heat-treated steels | ≤ 1200 N/mm² | 5 | 20 | 531 | 2122 | 1,00 | 531 | 2122 | 1,00 | 531 | 2122 | 1,25 |
Nitriding steels | ≤ 1,200 N/mm² | 5 | 20 | 531 | 2122 | 1,00 | 531 | 2122 | 1,00 | 531 | 2122 | 1,25 |
Tool steels | ≤ 1,200 N/mm² | 5 | 20 | 531 | 2122 | 1,00 | 531 | 2122 | 1,00 | 531 | 2122 | 1,25 |
High-speed steels | ≤ 1,200 N/mm² | 5 | 20 | 531 | 2122 | 1,00 | 531 | 2122 | 1,00 | 531 | 2122 | 1,25 |
High-grade steels | ||||||||||||
Stainless steels | ≤ 1,200 N/mm² | 6 | 10 | 637 | 1061 | 1,00 | 637 | 1061 | 1,00 | 637 | 1061 | 1,25 |
Titanium | ≤ 850 N/mm² | 4 | 6 | 424 | 637 | 1,00 | 424 | 637 | 1,00 | 424 | 637 | 1,25 |
Special alloys | ≤ 1,200 N/mm² | 3 | 10 | 318 | 1061 | 1,00 | 318 | 1061 | 1,00 | 318 | 1061 | 1,25 |
Cast metals | ||||||||||||
Cast iron | ≤ 300 HB | 20 | 50 | 2122 | 5305 | 1,00 | 2122 | 5305 | 1,00 | 2122 | 5305 | 1,25 |
Nodular graphite and malleable iron | ≤ 350 HB | 20 | 50 | 2122 | 5305 | 1,00 | 2122 | 5305 | 1,00 | 2122 | 5305 | 1,25 |
Non-ferrous metals | ||||||||||||
Aluminium | ≤ 450 N/mm² | 20 | 40 | 2122 | 4244 | 1,00 | 2122 | 4244 | 1,00 | 2122 | 4244 | 1,25 |
Aluminium alloys | ≤ 450 N/mm² | 10 | 30 | 1061 | 3183 | 1,00 | 1061 | 3183 | 1,00 | 1061 | 3183 | 1,25 |
Wrought aluminium alloys | ≤ 400 N/mm² | 20 | 30 | 2122 | 3183 | 1,00 | 2122 | 3183 | 1,00 | 2122 | 3183 | 1,25 |
Aluminium cast alloys <= 10 % Si | ≤ 600 N/mm² | 20 | 30 | 2122 | 3183 | 1,00 | 2122 | 3183 | 1,00 | 2122 | 3183 | 1,25 |
Copper, low-alloy | ≤ 400 N/mm² | 10 | 30 | 1061 | 3183 | 1,00 | 1061 | 3183 | 1,00 | 1061 | 3183 | 1,25 |
Brass, long-chipping | ≤ 600 N/mm² | 20 | 50 | 2122 | 5305 | 1,00 | 2122 | 5305 | 1,00 | 2122 | 5305 | 1,25 |
Bronze, long-chipping | ≤ 1,000 N/mm² | 10 | 30 | 1061 | 3183 | 1,00 | 1061 | 3183 | 1,00 | 1061 | 3183 | 1,25 |
Plastics | ||||||||||||
Plastics, duroplastic | 10 | 15 | 1061 | 1592 | 1,00 | 1061 | 1592 | 1,00 | 1061 | 1592 | 1,25 | |
Plastics, thermoplastic | 20 | 30 | 2122 | 3183 | 1,00 | 2122 | 3183 | 1,00 | 2122 | 3183 | 1,25 |
For MF12x1.25 - MF14x1.5 | ||||||||||||
Material name | Tensile strength | M12x1.25 | M12x1.5 | MF14x1.5 | ||||||||
vc | n | f | n | f | n | f | ||||||
from | to | from | to | from | to | from | to | |||||
Steels | ||||||||||||
General structural steels | ≤ 850 N/mm² | 20 | 50 | 2122 | 5305 | 1,25 | 1592 | 3979 | 1,50 | 1273 | 3183 | 1,50 |
Unalloyed heat-treated steels | ≤ 850 N/mm² | 20 | 50 | 2122 | 5305 | 1,25 | 1592 | 3979 | 1,50 | 1273 | 3183 | 1,50 |
Low-alloy heat-treated steels | ≤ 850 N/mm² | 20 | 50 | 2122 | 5305 | 1,25 | 1592 | 3979 | 1,50 | 1273 | 3183 | 1,50 |
Unalloyed heat-treated steels | ≤ 1,000 N/mm² | 20 | 50 | 2122 | 5305 | 1,25 | 1592 | 3979 | 1,50 | 1273 | 3183 | 1,50 |
Low-alloy heat-treated steels | ≤ 1,000 N/mm² | 20 | 50 | 2122 | 5305 | 1,25 | 1592 | 3979 | 1,50 | 1273 | 3183 | 1,50 |
Alloyed heat-treated steels | ≤ 1200 N/mm² | 5 | 20 | 531 | 2122 | 1,25 | 398 | 1592 | 1,50 | 318 | 1273 | 1,50 |
Nitriding steels | ≤ 1,200 N/mm² | 5 | 20 | 531 | 2122 | 1,25 | 398 | 1592 | 1,50 | 318 | 1273 | 1,50 |
Tool steels | ≤ 1,200 N/mm² | 5 | 20 | 531 | 2122 | 1,25 | 398 | 1592 | 1,50 | 318 | 1273 | 1,50 |
High-speed steels | ≤ 1,200 N/mm² | 5 | 20 | 531 | 2122 | 1,25 | 398 | 1592 | 1,50 | 318 | 1273 | 1,50 |
High-grade steels | ||||||||||||
Stainless steels | ≤ 1,200 N/mm² | 6 | 10 | 637 | 1,061 | 1,25 | 477 | 796 | 1,50 | 382 | 637 | 1,50 |
Titanium | ≤ 850 N/mm² | 4 | 6 | 424 | 637 | 1,25 | 318 | 477 | 1,50 | 255 | 382 | 1,50 |
Special alloys | ≤ 1,200 N/mm² | 3 | 10 | 318 | 1,061 | 1,25 | 239 | 796 | 1,50 | 191 | 637 | 1,50 |
Cast metals | ||||||||||||
Cast iron | ≤ 300 HB | 20 | 50 | 2122 | 5305 | 1,25 | 1592 | 3979 | 1,50 | 1273 | 3183 | 1,50 |
Nodular graphite and malleable iron | ≤ 350 HB | 20 | 50 | 2122 | 5305 | 1,25 | 1592 | 3979 | 1,50 | 1273 | 3183 | 1,50 |
Non-ferrous metals | ||||||||||||
Aluminium | ≤ 450 N/mm² | 20 | 40 | 2122 | 4244 | 1,25 | 1592 | 3183 | 1,50 | 1273 | 2546 | 1,50 |
Aluminium alloys | ≤ 450 N/mm² | 10 | 30 | 1061 | 3183 | 1,25 | 796 | 2387 | 1,50 | 637 | 1910 | 1,50 |
Wrought aluminium alloys | ≤ 400 N/mm² | 20 | 30 | 2122 | 3183 | 1,25 | 1592 | 2387 | 1,50 | 1273 | 1910 | 1,50 |
Aluminium cast alloys <= 10 % Si | ≤ 600 N/mm² | 20 | 30 | 2122 | 3183 | 1,25 | 1592 | 2387 | 1,50 | 1273 | 1910 | 1,50 |
Copper, low-alloy | ≤ 400 N/mm² | 10 | 30 | 1061 | 3183 | 1,25 | 796 | 2387 | 1,50 | 637 | 1910 | 1,50 |
Brass, long-chipping | ≤ 600 N/mm² | 20 | 50 | 2122 | 5305 | 1,25 | 1592 | 3979 | 1,50 | 1273 | 3183 | 1,50 |
Bronze, long-chipping | ≤ 1,000 N/mm² | 10 | 30 | 1061 | 3183 | 1,25 | 796 | 2387 | 1,50 | 637 | 1910 | 1,50 |
Plastics | ||||||||||||
Plastics, duroplastic | 10 | 15 | 1061 | 1592 | 1,25 | 796 | 1194 | 1,50 | 637 | 955 | 1,50 | |
Plastics, thermoplastic | 20 | 30 | 2122 | 3183 | 1,25 | 1592 | 2387 | 1,50 | 1273 | 1910 | 1,50 |
For MF16x1.5 - MF20x1.5 | ||||||||||||
Material name | Tensile strength | M16x1.5 | MF18x1.5 | MF20x1.5 | ||||||||
vc | n | f | n | f | n | f | ||||||
from | to | from | to | from | to | from | to | |||||
Steels | ||||||||||||
General structural steels | ≤ 850 N/mm² | 20 | 50 | 1061 | 2653 | 1,50 | 796 | 1989 | 1,50 | 637 | 1592 | 1,50 |
Unalloyed heat-treated steels | ≤ 850 N/mm² | 20 | 50 | 1061 | 2653 | 1,50 | 796 | 1989 | 1,50 | 637 | 1592 | 1,50 |
Low-alloy heat-treated steels | ≤ 850 N/mm² | 20 | 50 | 1061 | 2653 | 1,50 | 796 | 1989 | 1,50 | 637 | 1592 | 1,50 |
Unalloyed heat-treated steels | ≤ 1,000 N/mm² | 20 | 50 | 1061 | 2653 | 1,50 | 796 | 1989 | 1,50 | 637 | 1592 | 1,50 |
Low-alloy heat-treated steels | ≤ 1,000 N/mm² | 20 | 50 | 1061 | 2653 | 1,50 | 796 | 1989 | 1,50 | 637 | 1592 | 1,50 |
Alloyed heat-treated steels | ≤ 1200 N/mm² | 5 | 20 | 265 | 1061 | 1,50 | 199 | 796 | 1,50 | 159 | 637 | 1,50 |
Nitriding steels | ≤ 1,200 N/mm² | 5 | 20 | 265 | 1061 | 1,50 | 199 | 796 | 1,50 | 159 | 637 | 1,50 |
Tool steels | ≤ 1,200 N/mm² | 5 | 20 | 265 | 1061 | 1,50 | 199 | 796 | 1,50 | 159 | 637 | 1,50 |
High-speed steels | ≤ 1,200 N/mm² | 5 | 20 | 265 | 1061 | 1,50 | 199 | 796 | 1,50 | 159 | 637 | 1,50 |
High-grade steels | ||||||||||||
Stainless steels | ≤ 1,200 N/mm² | 6 | 10 | 318 | 531 | 1,50 | 239 | 398 | 1,50 | 191 | 318 | 1,50 |
Titanium | ≤ 850 N/mm² | 4 | 6 | 212 | 318 | 1,50 | 159 | 239 | 1,50 | 127 | 191 | 1,50 |
Special alloys | ≤ 1,200 N/mm² | 3 | 10 | 159 | 531 | 1,50 | 119 | 398 | 1,50 | 95 | 318 | 1,50 |
Cast metals | ||||||||||||
Cast iron | ≤ 300 HB | 20 | 50 | 1061 | 2653 | 1,50 | 796 | 1989 | 1,50 | 637 | 1592 | 1,50 |
Nodular graphite and malleable iron | ≤ 350 HB | 20 | 50 | 1061 | 2653 | 1,50 | 796 | 1989 | 1,50 | 637 | 1592 | 1,50 |
Non-ferrous metals | ||||||||||||
Aluminium | ≤ 450 N/mm² | 20 | 40 | 1061 | 2122 | 1,50 | 796 | 1592 | 1,50 | 637 | 1273 | 1,50 |
Aluminium alloys | ≤ 450 N/mm² | 10 | 30 | 531 | 1592 | 1,50 | 398 | 1194 | 1,50 | 318 | 955 | 1,50 |
Wrought aluminium alloys | ≤ 400 N/mm² | 20 | 30 | 1061 | 1592 | 1,50 | 796 | 1194 | 1,50 | 637 | 955 | 1,50 |
Aluminium cast alloys <= 10 % Si | ≤ 600 N/mm² | 20 | 30 | 1061 | 1592 | 1,50 | 796 | 1194 | 1,50 | 637 | 955 | 1,50 |
Copper, low-alloy | ≤ 400 N/mm² | 10 | 30 | 531 | 1592 | 1,50 | 398 | 1194 | 1,50 | 318 | 955 | 1,50 |
Brass, long-chipping | ≤ 600 N/mm² | 20 | 50 | 1061 | 2653 | 1,50 | 796 | 1989 | 1,50 | 637 | 1592 | 1,50 |
Bronze, long-chipping | ≤ 1,000 N/mm² | 10 | 30 | 531 | 1592 | 1,50 | 398 | 1194 | 1,50 | 318 | 955 | 1,50 |
Plastics | ||||||||||||
Plastics, duroplastic | 10 | 15 | 531 | 796 | 1,50 | 398 | 597 | 1,50 | 318 | 477 | 1,50 | |
Plastics, thermoplastic | 20 | 30 | 1061 | 1592 | 1,50 | 796 | 1194 | 1,50 | 637 | 955 | 1,50 |
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. |