The new main catalog R25DE represents on more than 770 pages about 11.000 SIMTEK standard tools for highest expectations and is as well the basis for a wide range of customized tool solutions.
Discover innovations such as 3D-lasered chip forming geometries for maximum chip control or the new simmill 9W tool system with high-performance toothing for slotting, parting and slot milling!
Order a printed copy of the SIMTEK Main Catalog R25DE now!
(Please note: Catalog shipping can take up to 10 working days.)
Optimum machining conditions at any time, reducing non-productive time, avoiding 100% controls: there are many reasons to ensure optimum chip control in series production.
Lasered chip forming geometries enable maximum chip control and increase the process reliability and machining efficiency.
SIMTEK offers highly precise, 3D-lasered chip forming geometries for various applications
such as boring of bores, grooving and turning or grooving and profiling. According to the requirements, the chips are shaped, steered, segmented, broken or, by combinations of these control mechanisms, removed from the machining area.
Reduce your costs with 3D-lasered chip forming geometries.
New six-edged milling inserts with cutting diameter Ø 28.0 mm and milling depths up to 9.3 mm as well as twelve-edged milling inserts with cutting diameter Ø 50.0 mm and milling depths up to 16.5 mm for groove, slot and parting off milling!
The simmill 9W tool system consists of high-performance milling tools that offer maximum precision, very high cutting performance and a very long service life, especially for demanding milling operations.
Thanks to a high-performance toothing technology, in which the milling inserts make almost full-surface contact with the base and flanks of the insert seat, simmill 9W transmits very high torques, considerably improves radial and axial run-out and, ultimately, significantly increases the cutting performance.
SIMTEK is expanding its standard range of axial tools for face grooving on pivots and copy turning of axial contours. These new tools enable machining with very high grooving depths in small bore diameters.
For example, grooving is possible in bore diameters from Ø 6.0 mm on with grooving depths of up to 10 mm. Thanks to the attached corner radii for copying axial contours, grooving and edge breaking can be machined with just one tool.