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ROUGH E/MILL: 8.0MM CARBIDE COATED STEEL 4 FLUTE (SOMTA)
Excl. GST: $43.99
Incl. GST: $50.59
Incl. GST: $50.59
ROUGH E/MILL: 12.0MM CARBIDE COATED STEEL 4 FLUTE (SOMTA)
Excl. GST: $88.99
Incl. GST: $102.34
Incl. GST: $102.34
“ROUGH E/MILL: FAST 8.0MM CARBIDE UNCOATED 3 FLUTE ALUMINUM (SOMTA)” has been added to your cart. View cart
ROUGH E/MILL: 10.0MM CARBIDE COATED STEEL 4 FLUTE (SOMTA)
Excl. GST: $65.99
Incl. GST: $75.89
* Roughing Cutters in the round tool sector are better known as “RMR” cutters (Rapid Metal Removal)
*They (more commonly) will incoporate a typical spiral helix shape of multiple flutes which is a helix of between 20 and 40degrees
* The cutting edge is broken into many segments that look like serations or multiple small radii
* Tradesmen are of the opnion that the best RMR designs are ones that incorporate rounder profile serations
* This is for obvious reasons that mainly lead to increased cutting edge strength
* Having a broken edge has some benefts but also some draw backs
* Ultimately, all you really get is the ability “To produce smaller chips per cm3/min (i3/min) of material machined”
* By getting lots of smaller chips, you are able to get much better smarf removal/control and therefore, in some cases, are able to run a higher D.O.C (depth of cut) and/or f/z (feed per
* The main reasons for RMR cutters being in existence is lower cutting forces, higher tool life and less bending when milling a shoulder at a high depth of cut
* A broken edge greatly lowers the forces generated on the cutting edge. This can be a reduction of as much as 50% and an increase in tool life of as much as 50% can also be seen *
| Weight | 0.07 kg |
|---|---|
| Dimensions | 0.1 × 0.03 × 0.03 cm |
SKU:
EM-7486210
Category: Roughing E/Mill
Description
| DESCRIPTION | Roughing End Mill |
|---|---|
| DIAMETER | 10.0mm |
| MATERIAL | Carbide |
| FLUTES | 3 Flute |
| LENGTH O/A | 72.0mm |
| FLUTE LENGTH | 19.0mm |
| SHANK DIAMETER | 10.0mm |
| SHANK TYPE | Flatted Shank |
| FINISH | Coated |
| WEIGHT NETT/GROSS | 0.070kg |
| VOLUME | 0.0001cm |
| TO SUIT | * Fast cutting stainless * Hard Steel * Tool steel and other hard materials |
Shipping & Delivery
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* Roughing Cutters in the round tool sector are better known as "RMR" cutters (Rapid Metal Removal) *They (more commonly) will incoporate a typical spiral helix shape of multiple flutes which is a helix of between 20 and 40degrees * The cutting edge is broken into many segments that look like serations or multiple small radii * Tradesmen are of the opnion that the best RMR designs are ones that incorporate rounder profile serations * This is for obvious reasons that mainly lead to increased cutting edge strength * Having a broken edge has some benefts but also some draw backs * Ultimately, all you really get is the ability "To produce smaller chips per cm3/min (i3/min) of material machined" * By getting lots of smaller chips, you are able to get much better smarf removal/control and therefore, in some cases, are able to run a higher D.O.C (depth of cut) and/or f/z (feed per * The main reasons for RMR cutters being in existence is lower cutting forces, higher tool life and less bending when milling a shoulder at a high depth of cut * A broken edge greatly lowers the forces generated on the cutting edge. This can be a reduction of as much as 50% and an increase in tool life of as much as 50% can also be seen *
The sacrfice is finish on these end mills is uncoated and are most suitable for aluminum *
ROUGH E/MILL: FAST 8.0MM CARBIDE UNCOATED 3 FLUTE ALUMINUM (SOMTA)
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* Roughing Cutters in the round tool sector are better known as "RMR" cutters (Rapid Metal Removal)
*They (more commonly) will incoporate a typical spiral helix shape of multiple flutes which is a helix of between 20 and 40degrees
* The cutting edge is broken into many segments that look like serations or multiple small radii
* Tradesmen are of the opnion that the best RMR designs are ones that incorporate rounder profile serations
* This is for obvious reasons that mainly lead to increased cutting edge strength
* Having a broken edge has some benefts but also some draw backs
* Ultimately, all you really get is the ability "To produce smaller chips per cm3/min (i3/min) of material machined"
* By getting lots of smaller chips, you are able to get much better smarf removal/control and therefore, in some cases, are able to run a higher D.O.C (depth of cut) and/or f/z (feed per * The main reasons for RMR cutters being in existence is lower cutting forces, higher tool life and less bending when milling a shoulder at a high depth of cut
* A broken edge greatly lowers the forces generated on the cutting edge. This can be a reduction of as much as 50% and an increase in tool life of as much as 50% can also be seen
*The sacrfice is finish on these end mills is uncoated and are most suitable for aluminum *
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* Roughing Cutters in the round tool sector are better known as "RMR" cutters (Rapid Metal Removal)
*They (more commonly) will incoporate a typical spiral helix shape of multiple flutes which is a helix of between 20 and 40degrees
* The cutting edge is broken into many segments that look like serations or multiple small radii
* Tradesmen are of the opnion that the best RMR designs are ones that incorporate rounder profile serations
* This is for obvious reasons that mainly lead to increased cutting edge strength
* Having a broken edge has some benefts but also some draw backs
* Ultimately, all you really get is the ability "To produce smaller chips per cm3/min (i3/min) of material machined"
* By getting lots of smaller chips, you are able to get much better smarf removal/control and therefore, in some cases, are able to run a higher D.O.C (depth of cut) and/or f/z (feed per
* The main reasons for RMR cutters being in existence is lower cutting forces, higher tool life and less bending when milling a shoulder at a high depth of cut
* A broken edge greatly lowers the forces generated on the cutting edge. This can be a reduction of as much as 50% and an increase in tool life of as much as 50% can also be seen
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* Roughing Cutters in the round tool sector are better known as "RMR" cutters (Rapid Metal Removal)
*They (more commonly) will incoporate a typical spiral helix shape of multiple flutes which is a helix of between 20 and 40degrees
* The cutting edge is broken into many segments that look like serations or multiple small radii
* Tradesmen are of the opnion that the best RMR designs are ones that incorporate rounder profile serations
* This is for obvious reasons that mainly lead to increased cutting edge strength
* Having a broken edge has some benefts but also some draw backs
* Ultimately, all you really get is the ability "To produce smaller chips per cm3/min (i3/min) of material machined"
* By getting lots of smaller chips, you are able to get much better smarf removal/control and therefore, in some cases, are able to run a higher D.O.C (depth of cut) and/or f/z (feed per
* The main reasons for RMR cutters being in existence is lower cutting forces, higher tool life and less bending when milling a shoulder at a high depth of cut
* A broken edge greatly lowers the forces generated on the cutting edge. This can be a reduction of as much as 50% and an increase in tool life of as much as 50% can also be seen *
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* Roughing Cutters in the round tool sector are better known as "RMR" cutters (Rapid Metal Removal)
*They (more commonly) will incoporate a typical spiral helix shape of multiple flutes which is a helix of between 20 and 40degrees
* The cutting edge is broken into many segments that look like serations or multiple small radii
* Tradesmen are of the opnion that the best RMR designs are ones that incorporate rounder profile serations
* This is for obvious reasons that mainly lead to increased cutting edge strength
* Having a broken edge has some benefts but also some draw backs
* Ultimately, all you really get is the ability "To produce smaller chips per cm3/min (i3/min) of material machined"
* By getting lots of smaller chips, you are able to get much better smarf removal/control and therefore, in some cases, are able to run a higher D.O.C (depth of cut) and/or f/z (feed per
* The main reasons for RMR cutters being in existence is lower cutting forces, higher tool life and less bending when milling a shoulder at a high depth of cut
* A broken edge greatly lowers the forces generated on the cutting edge. This can be a reduction of as much as 50% and an increase in tool life of as much as 50% can also be seen *
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* Roughing Cutters in the round tool sector are better known as "RMR" cutters (Rapid Metal Removal)
*They (more commonly) will incoporate a typical spiral helix shape of multiple flutes which is a helix of between 20 and 40degrees
* The cutting edge is broken into many segments that look like serations or multiple small radii
* Tradesmen are of the opnion that the best RMR designs are ones that incorporate rounder profile serations
* This is for obvious reasons that mainly lead to increased cutting edge strength
* Having a broken edge has some benefts but also some draw backs
* Ultimately, all you really get is the ability "To produce smaller chips per cm3/min (i3/min) of material machined"
* By getting lots of smaller chips, you are able to get much better smarf removal/control and therefore, in some cases, are able to run a higher D.O.C (depth of cut) and/or f/z (feed per
* The main reasons for RMR cutters being in existence is lower cutting forces, higher tool life and less bending when milling a shoulder at a high depth of cut
* A broken edge greatly lowers the forces generated on the cutting edge. This can be a reduction of as much as 50% and an increase in tool life of as much as 50% can also be seen *
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* Roughing Cutters in the round tool sector are better known as "RMR" cutters (Rapid Metal Removal)
*They (more commonly) will incoporate a typical spiral helix shape of multiple flutes which is a helix of between 20 and 40degrees
* The cutting edge is broken into many segments that look like serations or multiple small radii
* Tradesmen are of the opnion that the best RMR designs are ones that incorporate rounder profile serations
* This is for obvious reasons that mainly lead to increased cutting edge strength * Having a broken edge has some benefts but also some draw backs
* Ultimately, all you really get is the ability "To produce smaller chips per cm3/min (i3/min) of material machined"
* By getting lots of smaller chips, you are able to get much better smarf removal/control and therefore, in some cases, are able to run a higher D.O.C (depth of cut) and/or f/z (feed per
* The main reasons for RMR cutters being in existence is lower cutting forces, higher tool life and less bending when milling a shoulder at a high depth of cut
* A broken edge greatly lowers the forces generated on the cutting edge. This can be a reduction of as much as 50% and an increase in tool life of as much as 50% can also be seen *
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* Roughing Cutters in the round tool sector are better known as "RMR" cutters (Rapid Metal Removal)
*They (more commonly) will incoporate a typical spiral helix shape of multiple flutes which is a helix of between 20 and 40degrees
* The cutting edge is broken into many segments that look like serations or multiple small radii
* Tradesmen are of the opnion that the best RMR designs are ones that incorporate rounder profile serations
* This is for obvious reasons that mainly lead to increased cutting edge strength
* Having a broken edge has some benefts but also some draw backs
* Ultimately, all you really get is the ability "To produce smaller chips per cm3/min (i3/min) of material machined"
* By getting lots of smaller chips, you are able to get much better smarf removal/control and therefore, in some cases, are able to run a higher D.O.C (depth of cut) and/or f/z (feed per
* The main reasons for RMR cutters being in existence is lower cutting forces, higher tool life and less bending when milling a shoulder at a high depth of cut
* A broken edge greatly lowers the forces generated on the cutting edge. This can be a reduction of as much as 50% and an increase in tool life of as much as 50% can also be seen *
