GARANT Master Steel Micro solid carbide drill, plain shank DIN 6535 HA 12×D, AlCrN, ⌀ DC h6: 2mm

Article no.: 121226 2
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Product details

Technical Data

Through-coolant yes, with 40 bar
Entry of cooling lubricant with cooling lubricant entry, axially concentric
Escape of cooling lubricant with cooling lubricant exit, axially concentric
Cooling lubricant yes
Series Master Steel
Wet maximum suitable
Manufacturer’s designation GARANT Master Steel Micro VHM-Bohrer zylindrischer Schaft
Interface position on the machine
Holder type Plain shank
Interface coding ZYL00300115
Holder shape form A
Holder version metric
Holder size, metric 3 mm
Dry machining unsuitable
Type of mounting spigot
Holder tolerance class h6
Shank diameter 3 mm
Shank length 28 mm
Air unsuitable
Cutter diameter, min. 2 mm
Cutter diameter, max. 2 mm
Configurable yes
Tolerance of cutter diameter tolerance class ISO
Flute length 28 mm
Number of teeth 2
Twist direction right-hand
Helix angle, min. 30 degrees
Angle, 1st step 128 degrees
Point geometry A
Type of drilling tool double chamfer drill
Product designation (type) N
Pilot drill required yes
Tool material solid carbide
Standard designation for cutting medium, 2nd Priority solid carbide
Standard designation for cutting medium, 3rd Priority solid carbide
Machining group P (steel)
Cutting media, manufacturer’s designation VHM
Coating AlCrN
Interface joint 1
Gauge length 32 mm
Usable length 25 mm
Overall length 60 mm
Functional length 59.51 mm
Weight 6.1 g
Cutting direction right-hand cutting
Tool version solid carbide
Standard Werksnorm
Machining method drilling into solid material
Colour ring green
Machining strategy HPC
Type of product indexable drill
Content single part

Identification & Classification

Article number 121226 2
EAN / GTIN 4062406580742
Manufacturer number 121226 2
Manufacturer/responsible person Hoffmann Supply Chain GmbH & Co. KG, Poststraße 15, 90471 Nürnberg, Germany, www.hoffmann-group.com

Application Table

Aluminium (short chipping)
N
50
Alu > 10% Si
N
50
Steel < 750 N/mm²
P
80
Steel < 900 N/mm²
P
70
Steel < 1100 N/mm²
P
60
Steel < 1400 N/mm²
P
50
INOX < 900 N/mm²
M
50
INOX > 900 N/mm²
M
35
Ti > 850 N/mm²
S
25
GG(G)
K
70
CuZn
N
50
Uni
 
wet maximum
 
wet minimum
 

Description

Version:

High-performance micro-drill for universal material use, focussing on steel processing. Maximum process reliability due to exactly matched tools within the overall system and expanded guide chamfer. Drilling of very small diameters down to the maximum depth after creating a pilot hole. Optimum compromise between core diameter and flute size for optimum chip evacuation – even with long-chipping materials. The increased metal removal rates and longer tool life ensure an economical drilling process, even with very small hole diameters combined with a large L/D ratio.

Note:

For reliable use of the micro-drills from 8×D, a pilot hole of at least 4×D is required using the micro-pilot drill 121223. For vertical machining and flat workpiece surfaces, a pilot hole can be dispensed with from DC = ⌀ 1 mm up to a length of 12×D. Please always ensure that the pilot hole is free from chips before using the subsequent drilling tool. We recommend setting a 90° counterbore with a suitable NC spotting drill after the pilot hole has been completed. For critical applications (e.g. highest possible production accuracy, minimal burr formation, reduced coolant pressure), reduce the feed rate of the tool by 50% before entering and exiting the material. Long-chipping materials may require chips to be evacuated in steps of 3×D each by moving the drill back slightly at pilot hole depth. Please make sure that you use a suitable tool clamping device (shrink-fit chuck, hydraulic clamping chuck) with a radial run-out of less than 0.003 mm, a sufficiently high coolant pressure (at least 30 bar), as well as sufficiently fine filtration of the cooling medium (DC <⌀ 2 mm with filter ≤ 0.010 mm; DC <⌀ 3 mm filter ≤ 0.020 mm). The specified L/D ratio gives the minimum achievable depth of hole with the respective micro-drill.
Flute length LC = L2 + 1.5 × DC.

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