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O design em V duplo da pastilha e do encaixe da pastilha segura a pastilha no lugar e minimiza o desvio radial.

Como resultado, essas condições de corte estável levam a uma alta precisão de largura de canal e alta repetibilidade.

Um mecanismo exclusivo de autofixação garante troca fácil de pastilha. 

De usinagem leve a pesada, a geometria positiva de quebra-cavacos SGP garante ação de corte suave e a evacuação de cavacos eficiente.

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  • P Steel (126)
    • P0
      Low-Carbon Steels, Long Chipping C < .25%; <125 HB; <530 N/mm^2 UTS (126)
    • P1
      Low-Carbon Steels, Short Chipping C < .25%; <125 HB; <530 N/mm^2 UTS (126)
    • P2
      Medium and High Carbon Steels C < .25%; <220 HB; <25 HRC; >530 N/mm^2 UTS (126)
    • P3
      Alloy Steels & Tool Steels C > .25%; <330 HB; <35 HRC; 600-850 N/mm^2 UTS (126)
    • P4
      Alloy Steels & Tool Steels C > .25%; 350-420 HB; 35-43 HRC; 850-1400 N/mm^2 UTS (126)
    • P5
      Ferritic, Martensitic, and PH Stainless Steels <330 HB; <35 HRC; 600-900 N/mm^2 UTS (126)
    • P6
      High Strength Ferritic, Martensitic, and PH Stainless Steels 350-450 HB; 35-43 HRC; 900-2400 N/mm^2 UTS (126)
  • M Stainless Steel (126)
    • M1
      Austenitic Stainless Steel 130-200 HB; <600 N/mm^2 UTS (126)
    • M2
      High Strength Austenitic Stainless and Cast Stainless Steels 150-230 HB; <25 HRC; >600 N/mm^2 UTS (126)
    • M3
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  • K Cast Iron (110)
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    • K3
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  • N Non-Ferrous Materials (92)
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      Wrought Aluminum (92)
    • N2
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    • N3
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  • S High-Temp Alloys (126)
    • S1
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    • S2
      Cobalt-Based, Heat-Resistant Alloys 250-450 HB; 25-48 HRC; 1000-1450 N/mm^2 UTS (108)
    • S3
      Nickel-Based, Heat Resistant Alloys 160-450 HB; <48 HRC; 600-1700 N/mm^2 UTS (108)
    • S4
      Titanium and Titanium Alloys 300-400 HB; 33-43 HRC; 900-1600 N/mm^2 UTS (126)
  • H Hardened Materials (74)
    • H1
      Hardened Materials 44-48 HRC (74)
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backEnd
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