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            TRIBOS-RM

            TRIBOS-RM

            Polygonal toolholders
            TRIBOS-RM is suitable for powerful HSC machining in micro-cutting up to 85,000?RPM and higher. The excellent run-out accuracy of ≤?0.003?mm as well as a stability gained from the anchor structure form the basis of the extremely compact toolholder mountings, and in so doing ensures precise and process-reliable metal cutting. The different sizes are perfectly suitable for small, highly dynamic machining centers.

            Advantages – Your benefits

            • High radial rigidity
              Stability at high cutting forces, good metal cutting performance, and therefore faster machining time and higher productivity
            • Small and compact design
              Precise and reliable metal cutting
            • Excellent vibration damping
              Micro-blowouts are prevented, optimal workpiece surfaces, machine spindle protection, increased tool service life resulting in a reduction of costs
            • Fine-balanced by default
              Suitable for high speeds with a balancing grade of G2.5 at 25,000?RPM
            • Comprehensive compatibility
              Can be ideally combined with TRIBOS SVL tool extensions
            • Permanent run-out and repeat accuracy ≤0.003?mm
              Optimal surface results, high precision machining and safe processes due to a uniform cutting action and highest repeatability
            • Minimizing set-up times and costs
              Quick and easy tool change with the clamping device TRIBOS-RM SVP
            • Rotationally symmetrical design
              The rotationally symmetrical design minimizes the interfering contour and ensures high speed of rotation.

            Options and special information

            • The anchor structure allows TRIBOS-RM to remain stable during loads caused by high cutting forces. The clamping forces suffice to reach the limits of the loads generated by high-speed machining centers. High machining performance paves the way for quicker machining times and thus increases the productivity.
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