RM5 Stainless Steel Roughing Geometry

August 10, 2016

The RM5 stainless steel roughing geometry from Walter USA LLC features guided twin-channel coolant targeted at the chip. This provides maximum cooling and enhanced tool life for machining ISO M stainless steels and ISO S high-temperature alloys, according to the company.

The Walter Precision coolant turning system and the RM5 indexable insert geometry are designed to work in concert to ensure ideal cooling. The new RM5 jet guiding geometry directs the coolant beneath the chip and thereby even closer to the cutting edge.

For added cutting efficiency, the Walter RM5 uses Tiger·tec Silver PVD Al2O3 cutting tool inserts in grades WSM10S, WSM20S, WSM30S, and Tiger·tec Silver CVD cutting tool material in WMP20S grade. The design of the cutting edges reduces notch formation and crater wear. Rigid clamp, wedge-type or lever-type clamping toolholders are available.

Related Glossary Terms

  • alloys

    alloys

    Substances having metallic properties and being composed of two or more chemical elements of which at least one is a metal.

  • chemical vapor deposition ( CVD)

    chemical vapor deposition ( CVD)

    High-temperature (1,000° C or higher), atmosphere-controlled process in which a chemical reaction is induced for the purpose of depositing a coating 2µm to 12µm thick on a tool’s surface. See coated tools; PVD, physical vapor deposition.

  • coolant

    coolant

    Fluid that reduces temperature buildup at the tool/workpiece interface during machining. Normally takes the form of a liquid such as soluble or chemical mixtures (semisynthetic, synthetic) but can be pressurized air or other gas. Because of water’s ability to absorb great quantities of heat, it is widely used as a coolant and vehicle for various cutting compounds, with the water-to-compound ratio varying with the machining task. See cutting fluid; semisynthetic cutting fluid; soluble-oil cutting fluid; synthetic cutting fluid.

  • indexable insert

    indexable insert

    Replaceable tool that clamps into a tool body, drill, mill or other cutter body designed to accommodate inserts. Most inserts are made of cemented carbide. Often they are coated with a hard material. Other insert materials are ceramic, cermet, polycrystalline cubic boron nitride and polycrystalline diamond. The insert is used until dull, then indexed, or turned, to expose a fresh cutting edge. When the entire insert is dull, it is usually discarded. Some inserts can be resharpened.

  • physical vapor deposition ( PVD)

    physical vapor deposition ( PVD)

    Tool-coating process performed at low temperature (500° C), compared to chemical vapor deposition (1,000° C). Employs electric field to generate necessary heat for depositing coating on a tool’s surface. See CVD, chemical vapor deposition.

  • stainless steels

    stainless steels

    Stainless steels possess high strength, heat resistance, excellent workability and erosion resistance. Four general classes have been developed to cover a range of mechanical and physical properties for particular applications. The four classes are: the austenitic types of the chromium-nickel-manganese 200 series and the chromium-nickel 300 series; the martensitic types of the chromium, hardenable 400 series; the chromium, nonhardenable 400-series ferritic types; and the precipitation-hardening type of chromium-nickel alloys with additional elements that are hardenable by solution treating and aging.

  • turning

    turning

    Workpiece is held in a chuck, mounted on a face plate or secured between centers and rotated while a cutting tool, normally a single-point tool, is fed into it along its periphery or across its end or face. Takes the form of straight turning (cutting along the periphery of the workpiece); taper turning (creating a taper); step turning (turning different-size diameters on the same work); chamfering (beveling an edge or shoulder); facing (cutting on an end); turning threads (usually external but can be internal); roughing (high-volume metal removal); and finishing (final light cuts). Performed on lathes, turning centers, chucking machines, automatic screw machines and similar machines.

Additional Products from Walter USA LLC

Walter has unveiled its M2025/M2026 octagon finishing facemills designed to reporedly deliver superior surface quality on large cast iron components.

Walter has introduced its latest orbital thread mills, the Thread Mill Orbital Unified National Fine (UNF) 2xD and 3xD models.

Walter has introduced the Walter Cut G1011-P, a new grooving tool that can enhance surface quality, extend tool life, and improve process reliability.

Walter has introduced a trio of universal, positive insert geometries that reduce downtime and boost performance in steel, stainless and iron machining (ISO material types P, M, and K).

The new Walter D4580 chamfer body provides cost effective drilling and chamfering in one tool.

Walter has introduced the Walter Tiger·tec Silver WPP05S, an extremely wear resistant indexable insert grade that delivers high performance and maximum productivity in steel machining (ISO P), particularly in roughing forged components and long production runs.

he new Walter BLAXX F5038 helical milling cutter features the superior stability that characterizes the entire line of Walter BLAXX high-end milling tools, including face and shoulder milling cutters.

Walter has introduced a pair of versatile, high performance and cost-effective taps: the Walter Prototyp TC115, designed for blind-hole threads, and the TC216 for through-hole threads.

Walter has introduced the B3230 Walter Capto fine boring tool.

Walter has introduced a reduced weight version of its Walter Precision<sup>MEDIUM</sup> B4031.C with the Walter Capto modular toolholding interface.

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