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Carbide Drill For HRC55

Carbide Drill

The Carbide Drill is a high-performance cutting tool primarily used for machining complex structures such as aerospace components and automotive engine parts. Its unique design allows it to perform exceptionally well in high-temperature, high-speed, and high-precision cutting environments. Compared to traditional cooling methods, internal coolant technology effectively improves cutting efficiency, extends tool life, and reduces thermal deformation during the machining process.
Product Features:

Advantage of Internal Coolant Technology:

The Carbide Drill utilizes internal coolant technology, allowing coolant to flow within the cutting zone. This effectively lowers the temperatures of the tool and workpiece, reducing the impact of heat on materials. This not only enhances cutting efficiency but also prevents tool wear caused by high temperatures.

High-Precision Machining:

This milling cutter exhibits exceptional wear resistance, maintaining sharp cutting edges during high-speed machining, reducing wear rates, and extending its overall lifespan. This feature is particularly crucial in environments requiring frequent and extensive machining.

Precision Machining:

Thanks to its unique design and internal coolant technology, the Carbide Drill performs exceptionally well in high-speed and high-precision machining. It can achieve precise machining of complex structures, meeting the strict precision requirements of modern manufacturing.

Strong Material Adaptability:

This cutting tool is suitable for a variety of challenging materials, including high-temperature alloys and titanium alloys. Its tool materials and coating technologies are carefully selected, ensuring stable performance in harsh working environments.
DR
TISiN
HRC55

Product Detail

For Steel , Cast Iron

Unit
(mm)
D
D≤12
D>12
T
0
0
-0.015
-0.02
Diameter D
Cutting Length L
Shank D2
Overall Length L2
mm
mm
mm
mm
1
4
4
50
1.1
4
4
50
1.25
4
4
50
1.3
5
4
50
1.4
6
4
50
1.5
6
4
50
1.6
6
4
50
1.7
7
4
50
1.8
7
4
50
1.9
8
4
50
2
8
4
50
2.1
9
4
50
2.2
9
4
50
2.3
9
4
50
2.4
10
4
50
2.5
10
4
50
2.6
11
4
50
2.7
11
4
50
2.8
11
4
50
2.9
12
4
50
3-3.7
20
4
62
3.8
24
4
62
3.9
24
4
62
4
24
4
62
4.1-4.7
24
6
66
4.8-6
28
6
66
6.1-7
34
8
79
7.1-8
41
8
79
8.1-10
47
10
89
10.1-12
55
12
102
12.1-14
60
16
107
14.5-16
65
16
115
16.5
65
18
115
17
70
18
115
18
70
23
120
Ordering Code
DR3D-010
DR3D-011
DR3D-125
DR3D-013
DR3D-014
DR3D-015
DR3D-016
DR3D-017
DR3D-018
DR3D-019
DR3D-020
DR3D-021
DR3D-022
DR3D-023
DR3D-024
DR3D-025
DR3D-026
DR3D-027
DR3D-028
DR3D-029
DR3D-030
DR3D-038
DR3D-039
DR3D-040
DR3D-048
DR3D-061
DR3D-071
DR3D-071
DR3D-101
DR3D-121
DR3D-145
DR3D-165
DR3D-170
DR3D-180

Work Material

P
M
K
N
S
H
Iso Workpiece Material Depth of cut (mm) VC m/min
P Mild Steel HB<180
Carbon Steel-30HRC
AP≤1.5D 180 rote speed(min-1)
Ae≤0.15D feed velocity(mm/min)
AP≤1D 130 rote speed(min-1)
Ae≤0.12D feed velocity(mm/min)
K Grey Cast Iron (<32HRC)
High-Alloy Cast Iron (35~45HRC)
AP≤1.5D 60 rote speed(min-1)
Ae≤0.15D feed velocity(mm/min)
AP≤1D 120 feed velocity(mm/min)
Ae≤0.12D feed velocity(mm/min)
Tool Diameter (mm)
4
6
8
10
12
16
20
P
4700 0.10-0.15
3100 0.14-0.20
2400 0.16-0.24
1900 0.18-0.27
1600 0.20-0.30
1200 0.25-0.36
950 0.30-0.40
7000 0.10-0.15
4700 0.14-0.20
3600 0.16-0.24
2800 0.18-0.27
400 0.20-0.30
1800 0.25-0.36
1400 0.30-0.40
K
4700 0.10-0.15
3100 0.14-0.20
2400 0.16-0.24
1900 0.18-0.27
1600 0.20-0.30
1200 0.25-0.36
950 0.30-0.40
7000 0.10-0.15
4700 0.14-0.20
3600 0.16-0.24
2800 0.18-0.27
400 0.20-0.30
1800 0.25-0.36
1400 0.30-0.40
Above table is the standard cutting data for side mlling maching, f for groove cutting, the VC should reach 50%-70% and the fed should reach 40%-60% based on the table.
High Efficiency Machining
Precision Machining Accuracy
Superior Surface Finish
Versatility Across Materials

Example Of An Application Using Carbide Drill HRC55

High Efficiency Machining

Precision Machining Accuracy

Superior Surface Finish

Versatility Across Materials

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