The invention relates to a cutting tool, more particularly to a one-piece carbide milling cutter (2) comprising a bar (6) shrink-fitted inside the body (4) of the milling cutter (2) and extending as far as what is known as the forward end of the milling cutter that comprises cutting edges (8). Through a friction effect the shrink-fitted bar (6) damps out flexural vibrations. Each cutting edge (8) is formed directly and continuously in the material of the bar (6) and the material of the body (4). Because those parts of the cutting edges that are formed in the material of the bar (6) rotate at lower speeds than those parts that are formed in the material of the body (4), the bar material can thus have poorer cutting speed performance than the body material.
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