
| ø22 | T | ø25 ool dia | .: øDc ( | mm), | ø28 Number | of rev | olution | ø30 s:n (m | ø32 in-1), Feed speed:Vf (mm/min), M | ø35 ax. dep | th of c | ut:ap | ø40 = 1.0 m | m | ø50 | ||||
| n 2,890 | V CICT = 3 6,940 | f CICT = 4 9,250 | n 2,550 | V CICT = 4 8,160 | f CICT= 5 10,180 | n 2,270 | V CICT = 4 7,280 | f CICT = 5 9,100 | n 2,120 | V CICT = 4 8,480 | f n Vf n CICT = 5 CICT = 5 CICT = 6 10,600 1,990 9,950 11,940 1,820 Vc =200 m/min,fz = 1.0 mm/t | V CICT = 5 9,100 | f CICT = 6 10,920 | n 1,590 | CICT = 7,950 | Vf 5 CICT = 6 9,540 | n 1,270 | CICT = 6,350 | Vf 5 CICT = 8 10,160 |
| 2,890 | 6,940 | 9,250 | 2,550 | 8,160 | 10,180 | 2,270 | 7,280 | 9,100 | 2,120 | 8,480 | 10,600 1,990 9,950 11,940 1,820 Vc =200 m/min,fz = 1.0 mm/t | 9,100 | 10,920 | 1,590 | 7,950 | 9,540 | 1,270 | 6,350 | 10,160 |
| 2,170 | 4,560 | 6,080 | 1,910 | 5,350 | 6,690 | 1,710 | 4,790 | 5,990 | 1,590 | 4,450 | 5,570 1,490 5,220 6,260 1,360 Vc =150 m/min,fz = 0.7 mm/t | 4,760 | 5,710 | 1,190 | 4,170 | 5,000 | 950 | 3,330 | 5,320 |
| 2,170 | 5,210 | 6,940 | 1,910 | 7,640 | 9,550 | 1,710 | 6,840 | 8,550 | 1,590 | 6,360 | 7,950 1,490 7,450 8,940 1,360 Vc =150 m/min,fz = 1.0 mm/t | 6,800 | 8,160 | 1,190 | 5,950 | 7,140 | 950 | 4,750 | 7,600 |
| 2,170 | 4,560 | 6,080 | 1,910 | 5,350 | 6,690 | 1,710 | 4,790 | 5,990 | 1,590 | 4,450 | 5,570 1,490 5,220 6,260 1,360 Vc = 150 m/min,fz = 0.7 mm/t | 4,760 | 5,710 | 1,190 | 4,170 | 5,000 | 950 | 3,330 | 5,320 |
| 3,180 | 4,770 | 6,360 | 1,530 | 3,060 | 3,820 | 1,360 | 2,720 | 3,400 | 1,270 | 2,540 | 3,180 1,190 2,980 3,570 1,090 | 2,720 | 3,270 | 960 | 2.400 | 2,880 | 760 | 1.900 | 2,280 |
| Vc =120 m/min,fz = 0.5 mm/t | |||||||||||||||||||
| 1,450 | 870 | 1,160 | 1,270 | 1,020 | 1,270 | 1,140 | 910 | 1,140 | 1,060 | 850 | 1,060 1,000 1,000 1,200 910 Vc =100 m/min,fz = 0.2 mm/t | 910 | 1,090 | 800 | 800 | 960 | 640 | 640 | 1,020 |
| 1,450 2,890 | 1,300 6,940 | 1,740 9,250 | 1,270 2,550 | 1,520 8,160 | 1,910 10,180 | 1,140 2,270 | 1.370 7,280 | 1,710 9,100 | 1,060 2,120 | 1,270 8,480 | 1,590 1,000 1,500 1,800 910 Vc =100 m/min,fz = 0.3 mm/t 10,600 1,990 9,950 11,940 1,820 Vc =200 m/min,fz = 1.0 mm/t | 1,370 9,100 | 1,640 10,920 | 800 1,590 | 1,200 7,950 | 1,440 9,540 | 640 1,270 | 960 6,350 | 1,530 10,160 |
| 2,890 | 5,200 | 6,940 | 2,550 | 6,110 | 7,640 | 2,270 | 5,460 | 6,820 | 2,120 | 6,780 | 8,480 1,990 7,960 9,550 1,820 Vc =200 m/min,fz = 0.8 mm/t | 7,280 | 8,740 | 1,590 | 6,360 | 7,630 | 1,270 | 5,080 | 8,130 |
| 2,170 | 5,210 | 6,940 | 1,910 | 6,110 | 7,640 | 1,710 | 5,460 | 6,820 | 1,590 | 6,360 | 7,950 1,490 7,450 8,940 1,360 Vc =150 m/min,fz = 1.0 mm/t | 6,800 | 8,160 | 1,190 | 5,950 | 7,140 | 950 | 4,750 | 5,700 |
| 580 | 700 | 930 | 510 | 820 | 1,020 | 450 | 730 | 910 | 420 | 840 | 1,050 400 1,000 1,200 360 Vc =40 m/min,fz = 0.5 mm/t | 900 | 1,080 | 320 | 800 | 960 | 250 | 630 | 1,000 |
| 430 | 260 | 340 | 380 | 230 | 290 | 340 | 200 | 260 | 320 | 260 | 320 300 300 360 270 Vc =30 m/min,fz = 0.2 mm/t | 270 | 320 | 240 | 240 | 290 | 190 | 190 | 300 |
| 1,740 | 1,570 | 2,090 | 1,530 | 1,840 | 2,300 | 1,360 | 1,630 | 2,040 | 1,270 | 1,520 | 1,910 1,190 1,790 2,140 1,090 Vc =120 m/min,fz = 0.3 mm/t | 1,640 | 1,960 | 950 | 1,430 | 1,710 | 760 | 1,140 | 1,820 |
| 1,160 | 700 | 930 | 1,020 | 820 | 1,020 | 910 | 730 | 910 | 850 | 680 | 850 800 800 960 730 Vc = 80 m/min,fz = 0.2mm/t | 730 | 880 | 640 | 640 | 770 | 510 | 510 | 820 |
| 870 | 310 | 420 | 760 | 300 | 380 | 680 | 270 | 340 | 640 | 260 | 320 600 300 360 550 Vc =60 m/min,fz = 0.1 mm/t | 230 | 340 | 480 | 240 | 280 | 380 | 200 | 300 |
| 870 | 160 | 210 | 760 | 150 | 190 | 680 | 140 | 170 | 640 | 130 | 160 600 150 180 550 Vc =60 m/min,fz = 0.06 mm/t | 120 | 170 | 480 | 120 | 140 | 380 | 100 | 150 |
- The above table shows the conditions for standard shank type cutters. When using long shank - Cutting conditions are generally limited by the rigidity and power of the machine and the rigidity type cutters, the number of teeth may be different. In this case, the cutting conditions should be of the workpiece. When setting the conditions, start from half of the values of the standard cutting H changed by referring to: “The usage of standard and long shanks” shown in previous page. conditions and then increase the value gradually while making sure the machine is running normally.
Shoulder Small depth Plunging Drilling Enlarged hole I
Slotting Ramping plunging (Helical feed)
milling
| Designation | DCX Tool dia. | APMX Max. depth of cut | RM MJ/ML/MS Max. ra ang | PX MH mping le | A Max. plunging depth | W MJ/ML/MS Max. cutting plungi | MH width in ng | øD1 MJ/ML/MS Min.mach hole d | MH inable ia. | øD2 Max.machinabl hole dia. | ae Max. cutting width in enlarged hole e |
| E/HXN03R016M... | ø16 | 1 | 2.1° | 1.7° | 0.3 | 3.5 | 3 | 22 | 23 | 30 | 12.5 |
| E/HXN03R018M... | ø18 | 1 | 1.7° | 1.6° | 0.3 | 3.5 | 3 | 26 | 27 | 34 | 14.5 |
| E/HXN03R020M... | ø20 | 1 | 1.4° | 1.3° | 0.3 | 3.5 | 3 | 30 | 31 | 38 | 16.5 |
| E/HXN03R022M... | ø22 | 1 | 1.2° | 1.1° | 0.3 | 3.5 | 3 | 34 | 35 | 42 | 18.5 |
| E/HXN03R025M... | ø25 | 1 | 1.0° | 0.9° | 0.3 | 3.5 | 3 | 40 | 41 | 48 | 21.5 |
| E/HXN03R028M... | ø28 | 1 | 0.8° | 0.8° | 0.3 | 3.5 | 3 | 46 | 46 | 54 | 24.5 |
| E/HXN03R030M... | ø30 | 1 | 0.7° | 0.7° | 0.3 | 3.5 | 3 | 50 | 50 | 58 | 26.5 |
| E/HXN03R032M... | ø32 | 1 | 0.7° | 0.7° | 0.3 | 3.5 | 3 | 54 | 54 | 62 | 28.5 |
| EXN03R035M... | ø35 | 1 | 0.6° | 0.6° | 0.3 | 3.5 | 3 | 60 | 60 | 68 | 31.5 |
| E/H/TXN03R040M... | ø40 | 1 | 0.5° | 0.5° | 0.3 | 3.5 | 3 | 70 | 70 | 78 | 36.5 |
| TXN03R050M... | ø50 | 1 | 0.4° | 0.4° | 0.3 | 3.5 | 3 | 90 | 90 | 98 | 46.5 |
・ For DCX above ø33 mm, slot milling, ramping or contouring is not recommended as chips may be re-cut.