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BAER HSSE-TiCN Machine Tap Form B - M 27 x 3.0 - DIN 376 Stainless Steel

€178.19*

Prices incl. VAT plus shipping costs

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EAN 4058462114397
Item no 110404305
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Product information

BAER HSSE-TiCN Machine Tap Form B - M 27 x 3.0 - DIN 376 Stainless Steel

Our machine taps are powerful and reliable taps for efficient machining in one step with the machine. Machine taps are used especially in industrial manufacturing. They can be used in CNC machines, thread cutting machines, cordless drills and pneumatic tapping arms, among others. As they are characterised by high efficiency and low production costs, they are often used in series production. The thread is cut by machine in one operation. Thus, although the BAER machine tap can basically be compared to short machine tap, it is designed for use with the machine.
The screw tap has an overflow shank according to DIN 376. This means that the shank has a smaller diameter than the thread. This means that the screw tap can also be used in deeper holes and longer thread lengths. This means that the spiral point (spiral entry) can also be used in deeper holes and longer thread lengths, as the long chamfer, the straight flutes and the ensure that the chip is transported forwards out of the hole.
Every material has its own individual chip behaviour. Therefore, screw taps must have the correct rake angle and - for even better results - a specially treated surface. This is the only way to achieve a good chip transport and to produce a thread that is true to gauge.
The high quality of the cobalt-alloyed HSSE steel that we use ensures that our tools are extremely durable and robust. Due to special hardening processes and repeated tempering the hardness structure is very homogeneous, which forms the ideal basis for a genuine BAER screw taps. This increases the toughness and stability of the screw taps, allowing them to remain in use for longer.
The TiCN coating is particularly suitable for use with high-strength steels, abrasive materials and also interrupted cuts, as it is less sensitive to impact loads. TiN is often insufficient and increased demands are made on hardness and toughness, in which case TiCN is used. However, because of the lower heat resistance, a stronger cooling of the TiCN-coated tools is important.

Dimensions

Diameter 27
Nominal diameter in inches 1,063
Nominal diameter in mm 27
Pitch 3,0
Pitch in mm 3
Dimension M 27 x 3,0

Characteristics

Product group Screw taps
Product type Machine taps
Thread standard M: Metric ISO standard thread according to DIN 13
Tolerance ISO2/6H
Direction Right
Standard DIN 376
Tensile strength at room temperature up to 1300 N/mm² | 41 HRC
Material HSSE TiCN

Core hole diameter: 24 mm
Core hole diameter
24 mm
Bild Lochtyp: https://media.baer.tools/media/vector/86/08/96/durchgangsloch.svg
Hole type
Through hole up to 2.5 x D
Bild Form: https://media.baer.tools/media/vector/89/22/a4/gewindebohrer_gerade_nuten_schaelanschnitt.svg
Form / Geometry
Form B with spiral point
Bild Anschnitt: https://media.baer.tools/media/vector/59/5d/26/gewindebohrer_anschnitt.svg
Chamfer
4-5 threads
Bild Spanabfuhr
Chip removal
Chips are removed downwards in the direction of cutting
Bild Kühlung: https://media.baer.tools/media/vector/41/a7/9a/gewindebohrer_aussenkuehlung.svg
Cooling
External cooling and lubrication
Bild Material: https://media.baer.tools/media/vector/1c/ec/93/gewindebohrer_beschichtung_TiCN.svg
Material
HSSE TiCN
Bild Zugfestigkeit: https://media.baer.tools/media/vector/c0/4a/39/zugfestigkeit.svg
Tensile strength at room temperature
up to 1300 N/mm² | 41 HRC
Tolerance: ISO2/6H
Tolerance
ISO2/6H

Applications

  • Stainless steels, INOX, V2A, V4A
  • Difficult-to-machine materials up to a maximum of 1200 N/mm²
  • Alloyed heat-treatable steels, nodular cast iron, malleable cast iron
  • Cast aluminium and wrought alloys Si<5% (long-chipping)
  • Copper alloys and brass (long-chipping)

Technical drawing

D1 M 27 x 3.0
D2 20 mm
L1 160 mm
L2 36 mm
Diameter 27
Square 16 mm

Application – Sample materials

Stainless steels (ferritic, austenitic, martensitic) Cutting speed vc in m/min
1.4104 X14CrMoS17 10 - 12
1.4301 X5CrNi18-10 (V2A) 10 - 12
1.4571 X6CrNiMoTi17-12-2 (V4A) 10 - 12
1.4005 X12CrS13 6 - 8
Construction steels, case-hardening steels Cutting speed vc in m/min
1.0050 St50-2 30 - 35
1.0401 C15 25 - 30
1.7147 20MnCr5 30 - 35
1.5919 15CrNi6 30 - 35
Alloyed steels, quenched and tempered steels Cutting speed vc in m/min
1.8515 31CrMo12 5 - 10
1.0503 C45 25 - 30
1.7218 25CrMo4 5 - 25
1.6511 36CrNiMo4 5 - 25
Spheroidal graphite cast iron, malleable cast iron Cutting speed vc in m/min
EN-JS-1030 EN-GJS-400-15 (GGG40) 20 - 25
EN-JS-1070 EN-GJS-700-2 (GGG70) 20 - 25
EN-JM-1010 EN-GJMW-350-4 (GTW-35) 20 - 25
EN-JM-1140 EN-GJMB-450-6 (GTS-45) 20 - 25
Pure aluminum, aluminum cast and wrought alloys Si < 5% (long chip length) Cutting speed vc in m/min
Al99,5 EN AW-1050 30 - 40
AlMgSi EN AW-6060 30 - 40
AlZn5Mg3Cu EN AW-7022 30 - 40
AlMg5 EN AC-51300 15 - 18
Copper alloys, brass (long-chipping) Cutting speed vc in m/min
E-Cu 57 EN CW400A 15 - 18
CuZn37 EN CW 508 L (Ms58) 15 - 18

Cutting speed vc [m/min] = (Outer diameter * π * speed) / 1000

Rotation speed n [1/min] = (Cutting speed in m/min * 1000) / (Outer diameter * π)

Feedrate programming [mm/min] = speed * pitch

Please note that the above cutting speeds are indicative and must be adjusted depending on lubrication and actuation.

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