Wave Radius Mill RSX(F) E ndmill - 8mm / 10mm / 12mm Inserts
Steel
Stainless Steel
Cast Iron
Exotic Alloy
Radial
-5° to -8°
.197”
.236”
Rake Angle
Axial
10°
(08000ES)
(10000ES)
(12000ES)
Fig 1
LS
LH
LF
Body ( RSXF08 ) Fine Pitch, Applicable Insert IC = 8mm
Dimensions ( mm )
Weight (kg)
Max. Dia. DCX
Shank DMM
Diameter DN
Head LH
Shank LS
Overall Length LF
Number of Teeth
Cat. No.
Fig
H
RSXF08020ES 20 20 16.9 30 70 100 3 RSXF08025ES 25 25 21.9 40 80 120 4
0.3 1 0.4 1
Body (RSXF3 / RSX10 ) Fine Pitch, Applicable Insert IC = 10mm
Body (RSX3 / RSX10 ) Applicable Insert IC = 10mm Dimensions (inch / mm )
Dimensions (inch / mm )
Max. Dia. DCX
Shank DMM
Diameter DN
Head LH
Shank LS
Overall Length LF
Number of Teeth
Weight (lbs / kg )
Max. Dia. DCX
Shank DMM
Diameter DN
Head LH
Shank LS
Overall Length LF
Number of Teeth
Weight (lbs / kg )
Cat. No. Fig RSXF31000EW ● 1.000 1.000 0.799 2.060 2.280 4.340 3 1.00 1 RSXF31000ELC ● 1.000 1.000 0.799 3.750 6.250 10.000 3 2.00 1 RSXF31250EW ● 1.250 1.250 1.063 2.060 2.280 4.340 4 1.25 1 RSXF31250ELC ● 1.250 1.250 1.063 3.750 6.250 10.000 4 2.75 1 RSXF31500EW ● 1.500 1.250 1.334 2.060 2.280 4.340 4 1.40 1 RSXF31500ELC ● 1.500 1.250 1.334 3.750 6.250 10.000 4 3.25 1 RSXF10025ES 25 25 20.3 50 80 130 3 0.4 1 RSXF10032ES 32 32 27.1 50 80 130 4 0.7 1 Body (RSXF4 / RSXF12 ) Fine Pitch, Applicable Insert IC = 12mm Dimensions (inch / mm ) Cat. No. Fig RSXF41250EW ● 1.250 1.250 1.063 2.060 2.280 4.340 3 1.40 1 RSXF41250ELC ● 1.250 1.250 1.063 3.750 6.250 10.000 3 3.50 1 RSXF41500EW ● 1.500 1.250 1.334 2.060 2.280 4.340 4 1.65 1 RSXF41500ELC ● 1.500 1.250 1.334 3.750 6.250 10.000 4 4.00 1 RSXF12032ES 32 32 25.6 50 80 130 3 0.7 1 Inserts are sold separately. Max. Dia. DCX Shank DMM Diameter DN Head LH Shank LS Overall Length LF Number of Teeth Weight (lbs / kg )
Cat. No. Fig RSX31000EW ● 1.000 1.000 0.799 2.060 2.280 4.340 2 0.95 1 RSX31250EW ● 1.250 1.250 1.063 2.060 2.280 4.340 3 1.15 1 RSX31500EW ● 1.500 1.250 1.334 2.060 2.280 4.340 3 1.25 1 RSX10025ES 25 25 20.3 50 80 130 2 0.4 1 RSX10032ES 32 32 27.1 50 80 130 3 0.7 1 Body (RSX4 / RSX12 ) Applicable Insert IC = 12mm Dimensions (inch / mm ) Cat. No. Fig RSX41250EW ● 1.250 1.250 1.063 2.060 2.280 4.340 2 1.20 1 RSX41500EW ● 1.500 1.250 1.334 2.060 2.280 4.340 3 1.50 1 RSX12032ES 32 32 25.6 50 80 130 2 0.7 1 Max. Dia. DCX Shank DMM Diameter DN Head LH Shank LS Overall Length LF Number of Teeth Weight (lbs / kg )
l USA stocked item
Worldwide Warehouse Item
Insert
Dimensions (inch / mm )
Grade
Coated Carbide
Fig 1
Fig 2
High-speed / Light General-purpose Roughing
Process
K
Inscribed Circle IC
Thickness S 0.125 3.18 0.156 3.97 0.187 4.76
Cat. No.
Applicable Cutters Fig
IC ±0.025
S ±0.025
S ±0.025
IC ±0.025
RDET0803M0EN-G RDET0803M0EN-H RDET10T3M0EN-G ● ● ● ● ● RDET10T3M0EN-H ● ● ● ● ● RDET1204M0EN-G ● ● ● ● ● RDET1204M0EN-H ● ● ● ● ●
1 1 1 1 2 2
RSX(F)08000ES
0.315 / 8
● Cross Section of Cutting Edge
RSX30000EW RSX(F)10000RS / ES RSX40000EW RSX(F)12000RS / ES ISO
0.394 / 10
H Type Cutting Speed v c (SFM/ m/min) Min. - Optimum - Max.
Insert Grade
Feed Rate f z (mm/t) Min. - Optimum - Max.
Hardness
Part Material
0.472 / 12
G Type
330-725 SFM .008-.024 IPT
Recommended Cutting Conditions 180 to 280 HB Carbon Steel
ACP200
Parts
160 140 180 120 180 120 100 120
0.40 0.30 0.25 0.25 0.25 0.25 0.25 0.30 0.20 0.20 0.20
100 100 150 80 150
- - - - - - - - - - -
0.20 0.20 0.15 0.15 0.15 0.15 0.15 0.10 0.10 0.10 0.10
- - - - - - - - - - -
- - - - - - - - - - -
200 180 200 180 200 180 160 160 40 100 60
- - - - - - - - - - -
0.60 0.40 0.35 0.35 0.35 0.35 0.35 0.40 0.30 0.30 0.30
P
330-650 SFM
.008-.016 IPT
ACP200
Wrench
Flat Screw Anti-seize Cream
180 to 280 HB 200HB 200 to 330 HB 200HB 230 to 270 HB 330HB 250HB 250 to 350 HB (Rm400) (Rm1050)
Alloy Steel
Cutting Speed v c (SFM/ m/min) Min. - Optimum - Max.
Insert Grade
Feed Rate f z (mm/t) Min. - Optimum - Max.
Applicable Cutter
ACM300
Hardness
Part Material
ISO
Ferritic
Cr- based
ACM300
N m
Martensitic
330-725 SFM .008-.024 IPT
M
Carbon Steel
ACM300
Austenitic 2-Phase Structure (Austenitic/Ferritic) Deposition Hardened Structures
180 to 280 HB
ACP200
160 140 180 120 180 120 100 120
0.40 0.30 0.25 0.25 0.25 0.25 0.25 0.30 0.20 0.20 0.20
100 100 150 80 150
- - - - - - - - - - -
- - - - - - - - - - -
200 180 200 180 200 180 160 160 40 100 60
0.20 0.20 0.15 0.15 0.15 0.15 0.15 0.10 0.10 0.10 0.10
- - - - - - - - - - -
- - - - - - - - - - -
0.60 0.40 0.35 0.35 0.35 0.35 0.35 0.40 0.30 0.30 0.30
RSX(F)08000ES TRDR08IP BFTX02506IP 1.5 SUMI-P RSX(F)10000ES TRDR15IP BFTX03584IP 3.0 SUMI-P RSX(F)12000ES TRDR15IP BFTX0409IP 3.0 SUMI-P Identification Code - Inch RSX F 3 1000 EW
Cr-Ni- based
P
ACM200
80 60 80 20 60 40
330-650 SFM
.008-.016 IPT
ACP200
180 to 280 HB 200HB 200 to 330 HB 200HB 230 to 270 HB 330HB 250HB 250 to 350 HB (Rm400) (Rm1050)
Alloy Steel
ACM200
265-580 SFM
.004-.016 IPT
ACM300
K
Cast Iron
Ferritic
ACK300
Cr- based
Feed Rate f z (ipt) Min - Max
Heat-Resistant Alloy
Martensitic Ni-based Material Pure Titanium (99.5%)
Cutting Speed v c (sfm) Min - Max
Recommended Grade
ACM300
30 80 50
Work Material
Hardness
ACM100
M S
Titanium
ACM300
Austenitic 2-Phase Structure (Austenitic/Ferritic) Deposition Hardened Structures α + β Alloy
ACM200
ACM200 Ferrite System 200 HB 500 - 650 0.006 – 0.014 ACM300 Martensitic 200~330HB 250 - 600 0.006 – 0.014 ACM300 Austenitc 200 HB 500 - 650 0.006 - 0.014 ACM300 400 Series 230~270HB 250 - 600 0.006 - 0.014 ACM200 Precipitation Hardening 330HB 200 - 525 0.006 - 0.014 ACM200 ACM200 ACK300 265-580 SFM .004-.016 IPT
Cr-Ni- based
80 60 80 20 60 40
Cutter Series Fine-Pitch Indication
Insert Series
Cutter Dia. 1.000"
Endmill Type W: Weldon C: Cylindrical
M
Identification Code RSX F 10 025 ES
K
Cast Iron
ACM100 200 - 325 0.004 – 0.012 α + β Alloy System (Rm1050) 130 - 200 0.004 – 0.012 Ni-based Material Ni Based Material System 250~350HB 65 - 130 0.004 - 0.012 Pure Titanium (99.5%) Pure Titanium (Rm400)
Heat-Resistant Alloy Heat Resistant Alloy
ACM100 ACM200
30 80 50
S
S
Cutter Series Fine-Pitch Indication
Insert Size
Cutter Dia. Endmill Type
Titanium
ACM200 NOTE: The cutting conditions above are a guide. Actual Conditions will need to be adjusted according to machine rigidity, work clamp rigidity, cutting depth and other factors. α + β Alloy
N m Recommended Tightening Torque (N·m)
H191
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