WNMG 432 CHIP BREAKER MHC GRADE TN30 / WNMG 080408 MHC TN30
WNMG 432 CHIP BREAKER MHC GRADE TN30 / WNMG 080408 MHC TN30
WNMG 432 CHIP BREAKER MHC GRADE TN30 / WNMG 080408 MHC TN30
WNMG 432 CHIP BREAKER MHC GRADE TN30 / WNMG 080408 MHC TN30
WNMG 432 CHIP BREAKER MHC GRADE TN30 / WNMG 080408 MHC TN30
WNMG 432 CHIP BREAKER MHC GRADE TN30 / WNMG 080408 MHC TN30
WNMG 432 CHIP BREAKER MHC GRADE TN30 / WNMG 080408 MHC TN30
WNMG 432 CHIP BREAKER MHC GRADE TN30 / WNMG 080408 MHC TN30
WNMG 432 CHIP BREAKER MHC GRADE TN30 / WNMG 080408 MHC TN30
WNMG 432 CHIP BREAKER MHC GRADE TN30 / WNMG 080408 MHC TN30
WNMG 432 CHIP BREAKER MHC GRADE TN30 / WNMG 080408 MHC TN30
WNMG 432 CHIP BREAKER MHC GRADE TN30 / WNMG 080408 MHC TN30

WNMG 432 CHIP BREAKER MHC GRADE TN30 / WNMG 080408 MHC TN30

Turning Insert
$10.66 each
10 inserts per box
Grade
Chip Breaker
Part Number
Quantity
- +

Canela reference WNMG432-MHC — 80° trigon (W) turning insert, grade TN30. Original Canela indexable insert and 1/32" (0.79 mm) corner radius. Sold individually, no minimum order.

Specifications

  • Reference: WNMG432-MHC
  • ISO designation: WNMG 080408
  • Insert shape: 80° trigon (W)
  • Clearance angle: 0° — negative (N)
  • Chipbreaker: MHC
  • Thickness (T): 3/16" (4.76 mm)
  • Inscribed circle (d): 1/2" (12.7 mm)
  • Corner radius (r): 1/32" (0.79 mm)
  • Grade: TN30
  • Brand: Canela

Dimensions in inches, as published in the Canela turning inserts catalog. Dimension letters follow the catalog diagram.

About the MHC chipbreaker

Recommendation for medium-heavy cutting of mild steel. Alternative breaker for medium cutting of carbon steel and alloy steel.Double sided chipbreaker. Flat land offers high edge strength. A wide chip pocket prevents chip jamming at large depth of cut.

About grade TN30

General purpose wear resistant turning grade. The multi-layer coating includes aluminum oxide to add additional heat and wear resistance. It is used to machine steel at lower speeds than TN15. This turning grade is for demanding metal removal operations, including cutting through scale at low speeds through heavy interruption, and problem machining of stainless steel at low speed and poor rigidity.

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