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Precyzyjna regulacja co do mikrona jest niezwykle prosta.

System wytaczania eBore obejmuje zakres średnic od 6–1020 mm, oferując najnowocześniejsze rozwiązania narzędziowe do wytaczania dokładnego, które mają jedną wspólną funkcję: wszystkie są gotowe do użycia w zastosowaniach cyfrowych.

Cyfrowy wyświetlacz eBore umożliwia ponowne ustawienie narzędzia na wrzecionie, co skraca czas ustawiania i bezczynności.

Jeden dla wszystkich – cyfrowy wyświetlacz eBore obsługujący wszystkie narzędzia do wytaczania dokładnego eBore.

Precyzyjna regulacja każdego narzędzia co do mikrona jest niezwykle prosta.

eBore Universal

Dokładne wytaczanie eBore

Narzędzia ModBORE

Dwustronne frezy eBore

eBore Digital Display

Właściwości wyświetlacza eBore™

  • Pokrętło regulacji ręcznej.
  • Możliwość modernizacji od metody analogowej do cyfrowej.
  • Wszechstronność dzięki różnym opcjom narzędzi do wytaczania dokładnego.
  • Zakres średnic: 6–1020 mm.
  • Proste wytaczanie precyzyjne.
  • Regulacja każdego narzędzia z dokładnością do mikrona.
  • Regulacja narzędzia na wrzecionie.

 

Informacje dotyczące zastosowań

 

 

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Workpiece Material
Workpiece Material
  • P Steel (44)
    • P0
      Low-Carbon Steels, Long Chipping C < .25%; <125 HB; <530 N/mm^2 UTS (44)
    • P1
      Low-Carbon Steels, Short Chipping C < .25%; <125 HB; <530 N/mm^2 UTS (44)
    • P2
      Medium and High Carbon Steels C < .25%; <220 HB; <25 HRC; >530 N/mm^2 UTS (44)
    • P3
      Alloy Steels & Tool Steels C > .25%; <330 HB; <35 HRC; 600-850 N/mm^2 UTS (44)
    • P4
      Alloy Steels & Tool Steels C > .25%; 350-420 HB; 35-43 HRC; 850-1400 N/mm^2 UTS (44)
    • P5
      Ferritic, Martensitic, and PH Stainless Steels <330 HB; <35 HRC; 600-900 N/mm^2 UTS (44)
    • P6
      High Strength Ferritic, Martensitic, and PH Stainless Steels 350-450 HB; 35-43 HRC; 900-2400 N/mm^2 UTS (44)
  • M Stainless Steel (44)
    • M1
      Austenitic Stainless Steel 130-200 HB; <600 N/mm^2 UTS (44)
    • M2
      High Strength Austenitic Stainless and Cast Stainless Steels 150-230 HB; <25 HRC; >600 N/mm^2 UTS (44)
    • M3
      Duplex Stainless Steel 135-275 HB; <30 HRC; 500-1200 N/mm^2 UTS (44)
  • K Cast Iron (39)
    • K1
      Gray Cast Iron 120-290 HB; <32 HRC; 125-500 N/mm^2 UTS (39)
    • K2
      Low and Medium Strength CGI and Ductile Irons 130-260 HB; <28 HRC; <600 N/mm^2 UTS (39)
    • K3
      High Strength Ductile and Austempered Ductile Iron 180-350 HB; <43 HRC; >600 N/mm^2 UTS (39)
  • N Non-Ferrous Materials (39)
    • N1
      Wrought Aluminum (39)
    • N2
      Low-Silicon Aluminum Alloys and Magnesium Alloys Si <12.2% (39)
    • N3
      High-Silicon Aluminum Alloys Si >12.2% (39)
    • N4
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    • N5
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    • N6
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    • N7
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  • S High-Temp Alloys (44)
    • S1
      Iron-Based, Heat-Resistant Alloys 160-260 HB; 25-48 HRC; 500-1200 N/mm^2 UTS (44)
    • S2
      Cobalt-Based, Heat-Resistant Alloys 250-450 HB; 25-48 HRC; 1000-1450 N/mm^2 UTS (44)
    • S3
      Nickel-Based, Heat Resistant Alloys 160-450 HB; <48 HRC; 600-1700 N/mm^2 UTS (44)
    • S4
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  • H Hardened Materials (39)
    • H1
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    • H2
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    • H3
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    • H4
      Hardened Materials >60 HRC (39)
  • C CFRP Materials (39)
    • C1
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    • C2
      CFRP / Aluminium CFRP / Non-Ferrous (39)
Applications
Applications
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F Dimension
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Minimum Axial Groove Diameter
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