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Mark all as readWorkpiece Materials
Machine Side
Workpiece Side
Grades
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KCSM40
Coated carbide grade with an advanced PVD TiAlN/TiN coating. Premium substrate with newly developed binder composition. KCSM40 is a high-performance grade for titanium, super alloys, and stainless steel. High thermal shock resistance of the substrate makes this grade ideal for wet machining. First choice for roughing and unsuitable cutting conditions.
P SteelS High-Temp AlloysM Stainless Steel -
MP91M
CVD-coated carbide grade with TiN/MT-TiCN/Al2O3. Tough substrate in combination with wear resistant for roughing and semi-finishing of steel, cast iron, and hardened materials.
P SteelK Cast Iron -
SP6519
Coated carbide grade with PVD TiAlN nano-composite coating on a tough substrate. Primarily for use in general and heavy machining, dry and wet.
P SteelS High-Temp AlloysM Stainless Steel -
X500
CVD TiN/TiCN/TiN coated carbide on tough substrate (X-Grade™ technology). For difficult applications with heavy impacts, vibrations, or unstable conditions. High stability against thermal cracks. Excellent grade for high-temperature alloys, stainless steels, and titanium.
P SteelS High-Temp AlloysM Stainless Steel
Werkstoffgruppe | Leichte Bearbeitung | Allgemeine Anwendung | Schruppbearbeitung | |||
– | (Leicht schneidende Geometrie) | (Stabile Geometrie) | ||||
– | Verschleiß- festigkeit | Zähigkeit | ||||
– | Geometrie | Sorte | Geometrie | Sorte | Geometrie | Sorte |
P1–P2 | .E..422 | SP6519 | .E..41 | SP6519 | .E..423 | SP6519 |
P3–P4 | .E..41 | MP91M | .E..423 | SP6519 | ...TN | SP6519 |
P5–P6 | .E..41 | SP6519 | .E..423 | SP6519 | ...TN | SP6519 |
M1–M2 | .E..422 | KCSM40 | .E..41 | KCSM40 | .E..423 | KCSM40 |
M3 | .E..41 | KCSM40 | .E..423 | KCSM40 | ...TN | KCSM40 |
K1–K2 | – | – | – | – | – | – |
K3 | – | – | – | – | – | – |
N1–N2 | – | – | – | – | – | – |
N3 | – | – | – | – | – | – |
S1–S2 | .E..422 | KCSM40 | .E..41 | KCSM40 | .E..423 | KCSM40 |
S3 | .E..41 | KCSM40 | .E..423 | KCSM40 | ...TN | KCSM40 |
S4 | .E..41 | X500 | .E..423 | X500 | ...TN | X500 |
H1 | – | – | – | – | – | – |
Recommended Starting Feeds [mm]
Schneidkörper- Geometrie | Empfohlener Start-Vorschub pro Zahn (fz) im Verhältnis zur radialen Schnitttiefe (ae) in % | Schneidkörper- Geometrie | ||||||||||||||
5% | 10% | 20% | 30% | 40–100% | ||||||||||||
.E..422 | 0,16 | 0,52 | 0,87 | 0,12 | 0,38 | 0,63 | 0,09 | 0,28 | 0,47 | 0,08 | 0,25 | 0,41 | 0,07 | 0,23 | 0,38 | .E..422 |
.E..41 | 0,16 | 0,52 | 0,87 | 0,12 | 0,38 | 0,63 | 0,09 | 0,28 | 0,47 | 0,08 | 0,25 | 0,41 | 0,07 | 0,23 | 0,38 | .E..41 |
.E..423 | 0,20 | 0,59 | 0,95 | 0,14 | 0,43 | 0,68 | 0,11 | 0,32 | 0,51 | 0,09 | 0,28 | 0,44 | 0,08 | 0,25 | 0,41 | .E..423 |
...TN | 0,20 | 0,59 | 0,95 | 0,14 | 0,43 | 0,68 | 0,11 | 0,32 | 0,51 | 0,09 | 0,28 | 0,44 | 0,08 | 0,25 | 0,41 | ...TN |
Leichte Bearbeitung | Allgemeine Anwendung | Schruppbearbeitung |
Recommended Starting Feeds [IPT]
Schneidkörper- Geometrie | Empfohlener Start-Vorschub pro Zahn (fz) im Verhältnis zur radialen Schnitttiefe (ae) in % | Schneidkörper- Geometrie | ||||||||||||||
5% | 10% | 20% | 30% | 40–100% | ||||||||||||
.E..422 | .007 | .021 | .035 | .005 | .015 | .025 | .004 | .011 | .019 | .003 | .010 | .016 | .003 | .009 | .015 | .E..422 |
.E..41 | .007 | .021 | .035 | .005 | .015 | .025 | .004 | .011 | .019 | .003 | .010 | .016 | .003 | .009 | .015 | .E..41 |
.E..423 | .008 | .023 | .037 | .006 | .017 | .027 | .004 | .013 | .020 | .004 | .011 | .017 | .003 | .010 | .016 | .E..423 |
...TN | .008 | .023 | .037 | .006 | .017 | .027 | .004 | .013 | .020 | .004 | .011 | .017 | .003 | .010 | .016 | ...TN |
Leichte Bearbeitung | Allgemeine Anwendung | Schruppbearbeitung |