Каталог Mitsubishi Materials запасные части
Каталог Mitsubishi Materials резьбонарезной инструмент
Каталог Mitsubishi Materials СНП с CBN и PCD для токарной обработки
Каталог Mitsubishi Materials сверлильные инструменты
Каталог Mitsubishi Materials расточной инструмент
Каталог Mitsubishi Materials пластины для точения 
| Cutting Dia. Max. | Cutting Dia. Max. | (inch) | ||||
| Work Material | Properties | Depth of Cut ap | Breaker | DCX=2.000", 50 mm, 52 mm Feedfz(IPT) | DCX >2.500", 63 mm Feedfz(IPT) | Cutting Mode |
| K | ≤040 | M,R | .067(.024─.098) | .071(.024─.110) | Dry | |
| . | L | .051(.016─.079) | .051(.016─.079) | Dry | ||
| ≤060 | M,R | .059(.024─.079) | .067(.024─.098) | Dry | ||
| Tensile Strength | . | L | .047(.016─.071) | .047(.016─.071) | Dry | |
| Gray Cast Iron | ≤350MPa | ≤080 | M,R | .051(.024─.079) | .059(.024─.098) | Dry |
| . | L | .039(.016─.059) | .039(.016─.059) | Dry | ||
| ≤.100 | M,R | .031(.012─.059) | .039(.012─.063) | Dry | ||
| ≤.120 | M,R | .016(.008─.039) | .020(.008─.047) | Dry | ||
| ≤040 | M,R | .059(.020─.079) | .067(.020─.098) | Dry | ||
| . | L | .047(.012─.079) | .047(.012─.079) | Dry | ||
| ≤060 | M,R | .051(.020─.071) | .059(.020─.079) | Dry | ||
| Tensile Strength | . | L | .039(.012─.067) | .039(.012─.067) | Dry | |
| Ductile Cast Iron | ≤450MPa | ≤080 | M,R | .047(.020─.071) | .051(.020─.079) | Dry |
| . | L | .031(.012─.059) | .031(.012─.059) | Dry | ||
| ≤.100 | M,R | .028(.012─.047) | .035(.012─.059) | Dry | ||
| ≤.120 | M,R | .012(.008─.031) | .016(.008─.039) | Dry | ||
| ≤040 | M,R | .051(.016─.071) | .059(.016─.079) | Dry | ||
| . | L | .039(.012─.067) | .039(.012─.067) | Dry | ||
| Dtil Ct I | Tensile Strength | ≤060 | M,R | .047(.016─.059) | .051(.016─.071) | Dry |
| uce as ron | ≤800MPa | . | L | .031(.012─.059) | .031(.012─.059) | Dry |
| ≤080 | M,R | .039(.016─.059) | .047(.016─.071) | Dry | ||
| . | L | .028(.012─.047) | .028(.012─.047) | Dry | ||
| S | ≤.040 | L | .012(.008─.024) | .012(.008─.024) | Wet | |
| Titanium Alloy | ─ | ≤.060 | L | .012(.008─.020) | .012(.008─.020) | Wet |
| ≤.080 | L | .012(.008─.016) | .012(.008─.016) | Wet | ||
| ≤.040 | L,M,R | .039(.012─.051) | .039(.012─.051) | Wet | ||
| Heat Resistant Alloy | ─ | ≤.060 | L,M,R | .031(.012─.047) | .031(.012─.047) | Wet |
| ≤.080 | L,M,R | .028(.012─.047) | .028(.012─.047) | Wet | ||
| H | ≤.040 | R,M | .031(.012─.047) | .031(.012─.047) | Dry | |
| Hardened Steel | Hardness 40-55HRC | ≤.060 | R,M | .024(.012─.039) | .024(.012─.039) | Dry |
| ≤.080 | R,M | .020(.012─.031) | .020(.012─.031) | Dry |
* The 1st recommend chip breaker for each depth of cut (ap). Note 1) To discharge chips effectively, use an air blow when machining. When the air blow is less effective at discharging chips, we recommend wet cutting. Note 2) When large vibration occurs, reduce the cutting conditions. Note 3) For interrupted cutting, reduce the cutting speed and feed rate by 20%. Note 4) If ap is set at .079" or more, avoid machining on the walls or ramping.