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U Drill Inserts Carbide Drill Insert SPMT

Short Description:

Product name: Carbide Drill insert
Series: SPMT
Chip-Breakers: JW


Product Detail

Product Tags

1

Product Information

Carbide drill insert for shallow hole drilling.
It is power-efficient, productive and reduces demands on the machine tool spindle as the main cutting forces are directed axially along the spindle. Internal plunge milling is started by drilling a hole for the plunging tool. WC and SP type with PVD coating performs good wear resistance, collapse resistance and oxidation resistance.

Specifications

Type

Boring Range

(mm)

Size

Application

Grade

L

IC

S

d

r

PVD

VK1025

VK1825

SPMT050204-GM

12.5-15

5

5

2.38

2.2

0.4

Semi-finishing

SPMT060204-GM

15.5-21.5

6

6

2.38

2.6

0.4

SPMT07T308-GM

22-27.5

7.94

7.94

3.97

2.8

0.8

SPMT090408-GM

28-33

9.8

9.8

4.3

4.2

0.8

SPMT110408-GM

34-41

11.5

11.5

4.76

4.4

0.8

SPMT140512-GM

42-50

14.3

14.3

5.2

5.75

1.2

• : Recommended Grade
O: Optional Grade

Application

Application as hole machining for various materials: steel, stainless steel and cast iron with desired hole diameter.

FAQ

1.what are carbide inserts used for?
A carbide insert is a tool used for accurately machining metal. Steel, carbon steel, cast iron, alloys at high temperatures, and non-ferrous metals with easy surface finishes can all be cut using this machine. You can easily replace the grips since many different types, sizes, shapes, and colors are available.
To keep your business running and competitive, it is essential to have the right equipment for metalworking. For different purposes, there are different types of carbide inserts that are used. 

2.How many types of carbide inserts?
Carbide inserts are available in many types depending on your application requirements.

3.How to choose the right insert?
It would be best if you considered many factors to make the right choice regarding carbide inserts. Select insert geometry, insert grade, shape (nose angle), size, nose radius, and entry angle carefully to achieve reasonable chip control and machining performance.


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