PART OF CATALOG

Clamping sleeves for taps DCONMS=20 | 12 x 9

46.00

Application:
For machines with rigid tapping. For safe clamping of taps in end mill holders according to DIN 1835 B.

3 point internal micrometer | digital 25-30mm | IP65 | reading 0,001mm

624.00

Construction:

  • Graduation: 0.001mm
  • Measuring contact points are designed to allow measurements near to the bottom of blind holes
  • reading parts brushed chromium-plated
  • Measuring surfaces are carbide
  • Ratchet stop

Delivery:

  • Setting rings
  • Extension rod >6mm
  • Warranty card
  • Instruction manual
  • Calibration certificate
  • LR44 1,5V Battery

End mill holder Weldon SK 30 – 16 – 63

47.00

Application:
For mounting straight-shank tools with lateral flat according to DIN 1835 form B (Weldon).


Delivery:
With clamping screw


  • All holders are made of forged steel
  • Specific, low warpage hardened
  • Surface hardened HRC 58~60
  • Hardening depth 0,8mm~0,9mm
  • Taper angle tolerance < AT 3 according to DIN 2080
  • Surface roughness Ra < 0,4 µm
  • Tensile strength in the core of min. 800 N/mm? after DIN
  • All functional surfaces fine machined

 

 

Tapping chucks for synchronisation SK 40 – M3-M27 – 95 | ER 32

393.00

Application:
For machining centres with synchronous spindle.


Note:

  • Synchro tapping chucks compensate synchronisation errors.
  • Minimal length compensation on compression and expansion balances very small pitch differences between synchro spindle and tap, which can cause high frictional forces on the thread flanks.
  • A possible increase of axial force during the tapping process is reduced to a minimum.
  • Suitable for internal coolant.
  • Coolant pressure up to max. 100 bar.

With balanced clamping nut


  • All holders are made of forged steel
  • Specific, low warpage hardened
  • Surface hardened HRC 58~60
  • Hardening depth 0,8mm~0,9mm
  • Taper angle tolerance < AT 3 according to DIN 2080
  • Surface roughness Ra < 0,4 µm
  • Tensile strength in the core of min. 800 N/mm? after DIN
  • All functional surfaces fine machined

Reduction sleeve DIN 1835 B DCONMS=32 | DCONWS=18

48.00

Application:
For mounting straight-shank tools according to DIN 1835 form B+E.


Delivery:
With clamping screw

Shrink chuck 4,5° SK 40 – 25 – 160

186.00

Application:
For mounting tools with straight shanks.


Note:
Toolholders suitable for induction-, contact- and hot air shrink units. O 3, 4, 5 with h4-tolerance and O 6 – O 32 with h6-tolerance1


For O 3, 4 and 5 mm only solid carbide tool shanks must be used!
  • All holders are made of forged steel
  • Specific, low warpage hardened
  • Surface hardened HRC 58~60
  • Hardening depth 0,8mm~0,9mm
  • Taper angle tolerance < AT 3 according to DIN 2080
  • Surface roughness Ra < 0,4 µm
  • Tensile strength in the core of min. 800 N/mm? after DIN
  • All functional surfaces fine machined

 

 

Tapping chucks for synchronisation SK 50 – M3-M12 – 79 | ER 16 | Mini

319.00

Application:
For machining centres with synchronous spindle.


Note:

  • Synchro tapping chucks compensate synchronisation errors.
  • Minimal length compensation on compression and expansion balances very small pitch differences between synchro spindle and tap, which can cause high frictional forces on the thread flanks.
  • A possible increase of axial force during the tapping process is reduced to a minimum.
  • Suitable for internal coolant.
  • Coolant pressure up to max. 100 bar.


Delivery:
With balanced clamping nut


  • All holders are made of forged steel
  • Specific, low warpage hardened
  • Surface hardened HRC 58~60
  • Hardening depth 0,8mm~0,9mm
  • Taper angle tolerance < AT 3 according to DIN 2080
  • Surface roughness Ra < 0,4 µm
  • Tensile strength in the core of min. 800 N/mm? after DIN
  • All functional surfaces fine machined

 

 

Radial toolholder – form B4 overhead left short B4 – 40 x 25 – 44

149.00

Application:
Mainly for external machining. For face machining.

Precision coolant supply: Improves chip evacuation and decreases the risk for chip jamming, critical factors for successful deep face grooving operations. Effective from low to high coolant pressures.With high precision coolant you get improved
chip breaking, longer tool life, better process security and productivity. Improves chip evacuation and decreases the risk for chip jamming, critical factors for successful deep face grooving operations. Effective from low to high coolant pressures.

FREE CONSULTATION

Have questions?
Leave a request