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 
CARBIDE
The rigidity of the machine or work material and chip discharge are sufficient at high efficiency conditions. The rigidity of the machine or work material or chip discharge is insufficient at general-purpose conditions.
| Work Material | Carbon Mild st | steel, A eel | lloy ste | el, | Pre-har Carbon Alloy to | dened s steel, A ol steel | teel, lloy stee | l, | Austen stainles | itic, Ferr s steel, | itic and Titanium | Marten alloy | sitic | Harden Cobaly | ed stainle chromium | ss steel, alloy | ||||
| AISI 10 ASTM | 45, AISI A36, AIS | 4140, I 1010 | AISI P2 AISI 43 | 1, AISI 40, SKD | P20, , SKT | AISI 30 | 4, AISI 3 | 16, Ti-6 | Al-4V | AISI 6 15-5P | 30, AISI 6 H, 17-4PH | 31 | ||||||||
| Dia. DC(mm) | Cutting speed (m/min) | Revolution (min-1) | Feed rate (mm/min) | Hole Depth ap (mm) | Step (mm) | Cutting speed (m/min) | Revolution (min-1) F ( | eed rate mm/min) Ho a | le Depth p (mm) | Step (mm) | Cutting speed (m/min) | Revolution (min-1) ( | Feed rate mm/min) H | ole Depth ap (mm) | Step (mm) | Cutting speed (m/min) | Revolution (min-1) F ( | eed rate mm/min) | Hole Depth ap (mm) | Step (mm) |
| 6 | 100 | 5300 | 950 | 9 | 3 | 70 | 3700 | 440 | 9 | 1.2 | 60 | 3200 | 100 | 6 | 0.6 | 40 | 2100 | 60 | 6 | 0.6 |
| 8 | 100 | 4000 | 720 | 12 | 4 | 70 | 2800 | 340 | 12 | 1.6 | 60 | 2400 | 70 | 8 | 0.6 | 40 | 1600 | 50 | 8 | 0.6 |
| 10 | 100 | 3200 | 580 | 15 | 5 | 70 | 2200 | 260 | 15 | 2.5 | 60 | 1900 | 60 | 10 | 0.6 | 40 | 1300 | 40 | 10 | 0.6 |
| 12 | 100 | 2700 | 490 | 18 | 5 | 70 | 1900 | 230 | 18 | 3 | 60 | 1600 | 50 | 12 | 0.6 | 40 | 1100 | 30 | 12 | 0.6 |
| 16 | 100 | 2000 | 360 | 24 | 5 | 70 | 1400 | 170 | 24 | 4 | 60 | 1200 | 40 | 16 | 0.6 | 40 | 800 | 20 | 16 | 0.6 |
| Depth of cut | ap | |||||||||||||||||||
| Coppe | r, Coppe | r alloy | ||||||||||||||||||
| Work Material | ||||||||||||||||||||
| Dia. DC(mm) | Cutting speed (m/min) | Revolution (min-1) | Feed rate (mm/min) | Hole Depth ap (mm) | Step (mm) | |||||||||||||||
| 6 | 120 | 6400 | 1200 | 9 | 3 | |||||||||||||||
| 8 | 120 | 4800 | 860 | 12 | 4 | |||||||||||||||
| 10 | 120 | 3800 | 680 | 15 | 5 | |||||||||||||||
| 12 | 120 | 3200 | 580 | 18 | 5 | |||||||||||||||
| 16 | 120 | 2400 | 430 | 24 | 5 | |||||||||||||||
| Depth | ||||||||||||||||||||
| of cut | ap |
Note 1) SMART MIRACLE Coating is not energized because of its nature. Therefore, an external contact (voltaic type) tool setter cannot be used. An internal contact (non-voltaic) type or laser type tool setter is recommended to measure the length of the tool. Note 2) Effective cutting of stainless steel, titanium alloy and heat-resistant alloy etc. can be achieved with the use of emulsion. Note 3) Chattering can still occur if the machine rigidity and clamping method are insufficient. In these cases the feed and speed should be reduced proportionately.