Inserts

September 01, 2010

Sandvik Coromant offers more than 300 inserts in a series of ISO S turning geometries for machining high-temperature and titanium alloys. The geometries are suitable for roughing and finishing and continuous and interrupted cutting. Six geometries are available for taking DOCs from 0.008" to 0.393". Four of the geometries are for taking moderate to small DOCs. The other two are for taking larger DOCs.

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.

  • 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 Sandvik Coromant Co.

Cutting tool and tooling systems specialist Sandvik Coromant is launching GC4330 and GC4340, two new insert grades for steel milling. With the development of advanced production technologies, such as a new substrate, Inveio coating and an improved post-treatment technology, the new grades provide…

Sandvik Coromant is releasing two series of ceramic endmills for optimized performance in nickel-based alloys. The latest brazed ceramic CoroMill 316 and ceramic CoroMill Plura endmills offer a more productive method for roughing in ISO S materials compared to standard carbide milling cutters.

Sandvik Coromant is releasing three new grades for its popular CoroDrill 870 exchangeable-tip drill. GC4344, GC3334 and GC2334 have been developed to offer significant tool life improvements and more predictable wear patterns, all while maintaining the high penetration rates and productivity for…

Sandvik Coromant is set to release two new grades for interrupted hard-part turning operations: CB7125 and CB7135. Available in October 2018, the grades will complete the company’s offer for hard-part turning, complementing the existing CB7105 and CB7115 grades.

Using digital solutions for monitoring of equipment utilization makes workshops far more efficient and profitable than would otherwise have been possible, which is why Sandvik Coromant has introduced CoroPlus MachiningInsights. MachiningInsights is more than a monitoring system. This solution…

Sandvik Coromant, is introducing two new ceramic insert grades that are capable of performing high-speed, high-security turning operations on components made from demanding HRSA (heat-resistant superalloy) materials. The CC6220 and CC6230 ceramic grades are developed to machine demanding materials…

Sandvik Coromant has introduced a high-precision hydraulic chuck for turning operations that offers enhanced pull-out security. CoroChuck 935 has been designed to deliver fast, rigid and secure clamping, time after time.

Sandvik Coromant has launched a new thread forming tap optimized for ISO P steel machining, which is designed to boost productivity, particularly in the automotive industry. The CoroTap 400 offers chip-free tapping, as well as faster machining times and stronger threads through reduced torque and…

Following last year’s launch of PrimeTurning methodology and tools for external turning operations, Sandvik Coromant is introducing a dedicated CoroTurn Prime SL head that makes this process available for internal turning operations. The new SL head will meet the needs of oil and gas, aerospace and…

The CoroThread 266 thread turning tool from Sandvik Coromant is available with precision over- and under-coolant to improve process security and maximize efficiency. The addition of over-coolant improves chip formation for more secure machining, while under-coolant controls temperature for long and…

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