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JABRO™-HPM JHP951

Highly productive roughing

Previously available with 3, 4 or 5 flutes, the Jabro-HPM JHP951 highperformance solid endmill for roughing applications now comes in a 4 flute design to achieve high-performance metal removal rates in unstable machining conditions.

4 FLUTE ROUGHING TOOL

With the 4 flute option added to the JHP951 tool for diameters 16 mm, 20 mm and 25 mm, manufacturers with less powerful machines or semistable workpiece clamping conditions can benefit from the endmill's productive roughing capabilities, including full slotting operations, in steel, cast iron and other commonly machined workpiece materials. The 4 flute design, when compared to the JHP951’s 5 flute version, exerts less cutting forces and frees up space for chip evacuation, thus widening the tool’s capabilities in terms of reliable deep pocketing and slotting up to 1.5 x D in all machining environments.

PRODUCT OVERVIEW

  • A high-performance solid endmill that easily tackles roughing applications in soft carbon steels, high alloy or high hardness steels and cast irons
  • Thanks to its curved helix, optimised number of flutes, uneven flute spacing and special flute cavity design, the JHP951 has a 30% higher metal removal rate as compared with the previous JHP950

 

RANGE OVERVIEW

  • Available in a full range of 3, 4 and 5 flute tools ø6 mm to ø25 mm


YOUR SECO BENEFIT

High material removal
capability, especially with
low-power machines
• Roughing and finishing
with the same tool
• Suitable for a wide range
of cutting conditions and
environments
• Excellent performance in
steel and cast iron materials
• 4 flute design for aggressive
machining, even in semistable
workpiece clamping
conditions
• Ample chip evacuation for
deeper pocket cutting
  • High material removalcapability, especially withlow-power machines
  • Roughing and finishingwith the same tool
  • Suitable for a wide rangeof cutting conditions andenvironments
  • Excellent performance insteel and cast iron materials
  • 4 flute design for aggressivemachining, even in semistableworkpiece clampingconditions
  • Ample chip evacuation fordeeper pocket cutting