Darmet - Cutting Tools

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Milling inserts

Milling inserts ADKT

 

Properties and application:

Specifications:

ADKT 
Insert shape and angle
A  85° shape a 85 
Normal clearance angle
D 15° angle d 15 
Tolerance class
K l ? 0,05
m ? 0,013
s ? 0,025
tolerance sh a 
Chipbreaker and clamping type
T type T

 

productivity feed coolant stainless steel
To increase productivity it is recommended to increase feed while respecting cutting speed Please use coolant when machining suitable material groups Respect recommended cutting speed during stainless steel machining

 

Operations
frezowanie rowkow frezowanie wystepow frezowanie czolowe
Slotting Shoulder milling Surfacing

 

DesignationGradelsP/rDCutting direction
ADKT 1505 PDTR PL 30 15 5,56 90° 15° right

 

ADKT 1505 PDTR
Material groupGroup numberBrinell hardness
[HB]
ap [mm]Feed [mm/turn]Vc [m/min]
minmaxminmaxminmax
Low carbon steel 1 150 0,5 14,0 0,18 0,32 180 300
180 14,0 0,32 260
210 14,0 0,32 220
Alloy steel 2 180 0,5 14,0 0,15 0,25 130 200
230 14,0 0,25 180
280 0,5 14,0 0,15 0,22 100 160
320 14,0 0,22 140
High alloy steel 3 220 0,5 10,0 0,12 0,22 90 130
280 10,0 0,22 110
320 0,5 10,0 0,12 0,18 60 100
350 10,0 0,18 90
400 0,5 5,0 0,10 0,18 40 80
480 3,0 0,16 70
550 1,5 0,14 60
Austenitic stainless steel
4 210 - 250 0,5 14,0 0,15 0,25 190 250
5 230 - 270 0,5 14,0 0,12 0,22 160 210
6 - 0,5 10,0 0,12 0,18 70 120
Ferritic stainless steel
7 annealed 0,5 14,0 0,15 0,25 150 230
Martensitic stainless steel
8 annealed 0,5 14,0 0,15 0,25 130 210
treated 0,5 14,0 0,15 0,20 90 150
Grey cast iron 9 140 - 230 0,5 14,0 0,18 0,32 150 240
220
190
Nodular cast iron 10 210 0,5 14,0 0,15 0,28 100 200
260 160
310 130
450 0,5 3,0 0,10 0,14 30 60
Nickel based alloys
11 - 0,5 10,0 0,12 0,18 25 35
28 38
40 65
Titanium based alloys
12 - 0,5 10,0 0,12 0,20 35 60
0,18 28 40

Milling inserts AOMT

 

Properties and application:

Specifications:

AOMT 
Insert shape and angle
A 85° shape a 85 
Normal clearance angle
O 15° angle d 15 
Tolerance class
M l ? 0,05
m ? 0,013
s ? 0,025
tolerance sh a 
Chipbreaker and clamping type
T type T

 

productivity feed coolant stainless steel
To increase productivity it is recommended to increase feed while respecting cutting speed Please use coolant when machining suitable material groups Respect recommended cutting speed during stainless steel machining

 

Operations
frezowanie rowkow frezowanie wystepow frezowanie czolowe
Slotting Shoulder milling Surfacing

 

DesignationGradelsP/rDCutting direction
AOMT 123608 PETR PL 30 12 3,6 0,8 15° right

 

AOMT 123608 PETR
Material groupGroup numberBrinell hardness
[HB]
ap [mm]Feed [mm/turn]Vc [m/min]
minmaxminmaxminmax
Low carbon steel 1 150 0,5 11,0 0,10 0,38 180 300
180 11,0 0,25 260
210 11,0 0,23 220
Alloy steel 2 180 0,5 11,0 0,08 0,22 130 200
230 11,0 0,22 180
280 0,5 11,0 0,08 0,18 100 160
320 11,0 0,18 140
High alloy steel 3 220 0,5 7,0 0,08 0,18 90 130
280 7,0 0,18 110
320 0,5 7,0 0,08 0,16 60 100
350 7,0 0,16 90
400 0,5 4,0 0,10 0,16 40 80
480 2,0 0,15 70
550 1,0 0,14 60
Austenitic stainless steel
4 210 - 250 0,5 7,0 0,10 0,22 190 250
5 230 - 270 0,5 7,0 0,10 0,20 160 210
6 - 0,5 7,0 0,08 0,18 70 120
Ferritic stainless steel
7 annealed 0,5 7,0 0,08 0,20 150 230
Martensitic stainless steel
8 annealed 0,5 7,0 0,08 0,20 130 210
treated 0,5 7,0 0,08 0,20 90 150
Grey cast iron 9 140 - 230 0,5 9,0 0,10 0,25 150 240
220
190
Nodular cast iron 10 210 0,5 9,0 0,10 0,22 100 200
260 160
310 130
450 0,5 3,0 0,10 0,14 30 60
Nickel based alloys
11 - 0,5 5,0 0,08 0,15 25 35
28 38
40 65
Titanium based alloys
12 - 0,5 5,0 0,08 0,18 35 60
0,15 28 40

Milling inserts APGT - ALU

 

Properties and applications:

Specifications:

APGT 
Insert shape and angle
A 85° shape a 85 
Normal clearance angle
P 11° angle p 11 
Tolerance class
G l ? 0,08
m ? 0,013
s ? 0,025
tolerance sh a 
Chipbreaker and clamping type
T type T 

 

Operations
frezowanie rowkow frezowanie wystepow frezowanie czolowe 
Slotting Shoulder milling Surfacing

 

DesignationGradelsP/rDCutting direction
APGT 1003 PDER ALU PL 05 10 3,18 90° 15° right
APGT 1604 PDER ALU PL 05 16 4,76 90° 15° right

 

APGT 1003 PDER ALU
AluminiumGroup numberBrinell hardness [HB]ap [mm]Feed [mm/turn]Vc [m/min]
minmaxminmaxminmax
Si < 4% 13 - 0,3 9,0 0,12 0,20 400 1200
4% < Si < 8% 13 - 0,10 0,18 250 600
Si > 8% 14 - Recommended to use APLX 1003 PDTR insert.
For aluminium with high content of silicon it is recommended to use APLX 1003 PDTR insert with cutting conditions shown below.
Si > 8% 14 - 0,5 9,0 0,08 0,20 200 400

 

APGT 1604 PDER ALU
AluminiumGroup numberBrinell hardness
[HB]
ap [mm]Feed [mm/turn]Vc [m/min]
minmaxminmaxminmax
Si < 4% 13 - 0,5 15,5 0,15 0,32 400 1200
4% < Si < 8% 13 - 0,12 0,25 250 600
Si > 8% 14 - Recommended to use SEKT 1204 AFTN insert.
For aluminium with high content of silicon it is recommended to use SEKT 1204 AFTN insert with cutting conditions shown below.
Si > 8% 14 - 0,5 16,0 0,15 0,25 200 400

Milling inserts APKT

 

Properties and application:

Specifications:

APKT 
Insert shape and angle
A  85° shape a 85 
Normal clearance angle
P 11° angle p 11 
Tolerance class
K l ? 0,05
m ? 0,013
s ? 0,025
tolerance sh a 
Chipbreaker and clamping type
T type T

 

productivity feed coolant stainless steel
To increase productivity it is recommended to increase feed while respecting cutting speed Please use coolant when machining suitable material groups Respect recommended cutting speed during stainless steel machining

 

Operations
frezowanie rowkow frezowanie wystepow frezowanie czolowe
Slotting Shoulder milling Surfacing

 

DesignationGradelsP/rDCutting direction
APKT 1604 PDTR PL 30 16 4,76 90° 15° right
APKT 160424 ER PL 30 16 4,76 2,4 15° right
APKT 1705 PETR PL 30 17 5,56 2,4 15° right

 

APKT 1604 PDTR i APKT 160424 ER
Material groupGroup numberBrinell hardness
[HB]
ap [mm]Feed [mm/turn]Vc [m/min]
minmaxminmaxminmax
Low carbon steel 1 150 0,5 15,0 0,18 0,32 180 300
180 15,0 0,32 260
210 15,0 0,32 220
Alloy steel 2 180 0,5 15,0 0,15 0,25 130 200
230 15,0 0,25 180
280 0,5 15,0 0,15 0,22 100 160
320 15,0 0,22 140
High alloy steel 3 220 0,5 12,0 0,12 0,22 90 130
280 12,0 0,22 110
320 0,5 12,0 0,12 0,18 60 100
350 12,0 0,18 90
400 0,5 5,0 0,10 0,18 40 80
480 3,0 0,16 70
550 1,5 0,14 60
Austenitic stainless steel
4 210 - 250 0,5 15,0 0,15 0,25 190 250
5 230 - 270 0,5 15,0 0,12 0,22 160 210
6 - 0,5 12,0 0,12 0,18 70 120
Ferritic stainless steel
7 annealed 0,5 15,0 0,15 0,25 150 230
Martensitic stainless steel
8 annealed 0,5 15,0 0,15 0,25 130 210
treated 0,5 15,0 0,15 0,20 90 150
Grey cast iron 9 140 - 230 0,5 15,0 0,18 0,32 150 240
220
190
Nodular cast iron 10 210 0,5 15,0 0,15 0,28 100 200
260 160
310 130
450 0,5 3,0 0,10 0,14 30 60
Nickel based alloys
11 - 0,5 12,0 0,12 0,18 25 35
28 38
40 65
Titanium based alloys
12 - 0,5 12,0 0,12 0,20 35 60
0,18 28 40

 

APKT 1705 PETR
Material groupGroup numberBrinell hardness
[HB]
ap [mm]Feed [mm/turn]Vc [m/min]
minmaxminmaxminmax
Low carbon steel 1 150 0,5 15,0 0,18 0,40 180 300
180 15,0 0,35 260
210 15,0 0,32 220
Alloy steel 2 180 0,5 15,0 0,18 0,35 130 200
230 15,0 0,32 180
280 0,5 15,0 0,18 0,30 100 160
320 15,0 0,28 140
High alloy steel 3 220 0,5 15,0 0,18 0,32 90 130
280 15,0 0,30 110
320 0,5 7,0 0,15 0,28 60 100
350 7,0 0,26 90
400 0,5 4,0 0,10 0,24 40 80
480 2,0 0,22 70
550 1,0 0,20 60
Austenitic stainless steel
4 210 - 250 0,5 9,0 0,15 0,22 190 250
5 230 - 270 0,5 9,0 0,15 0,20 160 210
6 - 0,5 9,0 0,15 0,18 70 120
Ferritic stainless steel
7 annealed 0,5 9,0 0,10 0,20 150 230
Martensitic stainless steel
8 annealed 0,5 9,0 0,10 0,20 130 210
treated 0,5 9,0 0,10 0,20 90 150
Grey cast iron 9 140 - 230 0,5 9,0 0,20 0,45 150 240
220
190
Nodular cast iron 10 210 0,5 9,0 0,20 0,45 100 200
260 160
310 130
450 0,5 3,0 0,10 0,22 30 60
Nickel based alloys
11 - 0,5 5,0 0,08 0,15 25 35
28 38
40 65
Titanium based alloys
12 - 0,5 5,0 0,08 0,18 35 60
0,15 28 40

Milling inserts APLX

 

Properties and application:

Specification:

APLX 
Insert shape and angle
A  85° shape a 85 
Normal clearance angle
P 11° angle p 11 
Tolerance class
L l ? 0,05
m ? 0,013
s ? 0,025
tolerance sh a 
Chipbreaker and clamping type
X type X

 

productivity feed coolant stainless steel
To increase productivity it is recommended to increase feed while respecting cutting speed Please use coolant when machining suitable material groups Respect recommended cutting speed during stainless steel machining

 

Operations
frezowanie rowkow frezowanie wystepow frezowanie czolowe
Slotting Shoulder milling Surfacing

 

DesignationGradelsP/rDCutting direction
APLX 1003 PDTR PL 30 10 3,18 90° 15° right
APLX 100308 PDTR PL 30 10 3,18 0,8 15° right
APLX 100332 PDTR PL 30 10 3,18 3,2 15° right
APLX 100340 PDTR PL 30 10 3,18 4,0 15° right

 

APLX 1003 PDTR i APLX 100308 PDTR
Material groupGroup numberBrinell hardness
[HB]
ap [mm]Feed [mm/turn]Vc [m/min]
minmaxminmaxminmax
Low carbon steel 1 150 0,5 9,0 0,10 0,38 180 300
180 9,0 0,25 260
210 9,0 0,23 220
Alloy steel 2 180 0,5 9,0 0,08 0,22 130 200
230 9,0 0,22 180
280 0,5 9,0 0,08 0,18 100 160
320 9,0 0,18 140
High alloy steel 3 220 0,5 7,0 0,08 0,18 90 130
280 7,0 0,18 110
320 0,5 7,0 0,08 0,16 60 100
350 7,0 0,16 90
400 0,5 4,0 0,10 0,16 40 80
480 2,0 0,15 70
550 1,0 0,14 60
Austenitic stainless steel
4 210 - 250 0,5 9,0 0,10 0,22 190 250
5 230 - 270 0,5 9,0 0,10 0,20 160 210
6 - 0,5 9,0 0,08 0,18 70 120
Ferritic stainless steel
7 annealed 0,5 9,0 0,08 0,20 150 230
Martensitic stainless steel
8 annealed 0,5 9,0 0,08 0,20 130 210
treated 0,5 9,0 0,08 0,20 90 150
Grey cast iron 9 140 - 230 0,5 9,0 0,10 0,25 150 240
220
190
Nodular cast iron 10 210 0,5 9,0 0,10 0,22 100 200
260 160
310 130
450 0,5 3,0 0,10 0,14 30 60
Nickel based alloys 11 - 0,5 5,0 0,08 0,15 25 35
28 38
40 65
Titanium based alloys
12 - 0,5 5,0 0,08 0,18 35 60
0,15 28 40

 

APLX 100332 PDTR i APLX 100340 PDTR
Material groupGroup numberBrinell hardness
[HB]
ap [mm]Feed [mm/turn]Vc [m/min]
minmaxminmaxminmax
Low carbon steel 1 150 0,5 9,0 0,18 0,38 180 300
180 9,0 0,25 260
210 9,0 0,23 220
Alloy steel 2 180 0,5 9,0 0,15 0,22 130 200
230 9,0 0,22 180
280 0,5 9,0 0,15 0,18 100 160
320 9,0 0,18 140
High alloy steel 3 220 0,5 7,0 0,12 0,18 90 130
280 7,0 0,18 110
320 0,5 7,0 0,12 0,16 60 100
350 7,0 0,16 90
400 0,5 4,0 0,10 0,16 40 80
480 2,0 0,15 70
550 1,0 0,14 60
Austenitic stainless steel
4 210 - 250 0,5 9,0 0,10 0,22 190 250
5 230 - 270 0,5 9,0 0,10 0,20 160 210
6 - 0,5 9,0 0,08 0,18 70 120
Ferritic stainless steel
7 annealed 0,5 9,0 0,08 0,20 150 230
Martensitic stainless steel
8 annealed 0,5 9,0 0,08 0,20 130 210
treated 0,5 9,0 0,08 0,20 90 150
Grey cast iron 9 140 - 230 0,5 9,0 0,10 0,32 150 240
220
190
Nodular cast iron 10 210 0,5 9,0 0,10 0,28 100 200
260 160
310 130
450 0,5 3,0 0,10 0,14 30 60
Nickel based alloys
11 - 0,5 5,0 0,08 0,15 25 35
28 38
40 65
Titanium based alloys
12 - 0,5 5,0 0,08 0,18 35 60
0,15 28 40

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