BallRoughNose Ballnose Endmills

Contact Details

Tungaloy-NTK America, Inc.
Address
3726 N. Ventura Dr.
Arlington Heights
60004
IL
United States
Phone
630-227-3700
Toll Free Phone
888-554-8394
Fax
888-554-8392
May 02, 2019
BallRoughNose Ballnose Endmills

BallRoughNose is the latest development in Tungaloy’s indexable milling technology for efficient and reliable rough profiling of curved surfaces.

This new line of indexable ball nose endmills is designed to provide maximum tool reliability during roughing and semifinishing processes. Its dovetail insert clamping design prevents the insert from being lifted by cutting forces during demanding operations; while unwanted insert rotation during machining is restrained by the unique locking design provided in the insert seat, assuring the indexing accuracy. These features boost BallRoughNose’s insert reliability during 3D profiling or plunging processes, while the insert’s helical cutting edge helps mitigate heavy cutting forces, promoting light cutting action.

The insert’s unique hybrid design allows one side of the insert to be used for center cutting and the other side for the peripheral. This eliminates the need to purchase two different types of inserts, reducing tool investment and inventory costs and simplifying management. The insert seat interface is designed to ensure the insert only fits a matching orientation. The tool bodies are all equipped with through-coolant channels for effective chip evacuation, preventing chips from being re-cut during complex profiling of die and mold parts. The tool shanks are available for working diameters of ø16 mm (0.625"), ø20 mm (0.75"), and ø25 mm (1") in an array of shank designs including cylindrical shanks with standard length or with long-necks and modular styles.

Product at a Glance:

Maximum insert reliability thanks to anti-lift and anti-rotation design of the insert seat interface

Helical cutting edge reduces impact and cutting force at the entry of the cut

Hybrid insert design allows the same insert to be used for either center cutting or periphery, reducing tool investment and management costs

Related Glossary Terms

  • cutting force

    cutting force

    Engagement of a tool’s cutting edge with a workpiece generates a cutting force. Such a cutting force combines tangential, feed and radial forces, which can be measured by a dynamometer. Of the three cutting force components, tangential force is the greatest. Tangential force generates torque and accounts for more than 95 percent of the machining power. See dynamometer.

  • gang cutting ( milling)

    gang cutting ( milling)

    Machining with several cutters mounted on a single arbor, generally for simultaneous cutting.

  • milling

    milling

    Machining operation in which metal or other material is removed by applying power to a rotating cutter. In vertical milling, the cutting tool is mounted vertically on the spindle. In horizontal milling, the cutting tool is mounted horizontally, either directly on the spindle or on an arbor. Horizontal milling is further broken down into conventional milling, where the cutter rotates opposite the direction of feed, or “up” into the workpiece; and climb milling, where the cutter rotates in the direction of feed, or “down” into the workpiece. Milling operations include plane or surface milling, endmilling, facemilling, angle milling, form milling and profiling.

  • profiling

    profiling

    Machining vertical edges of workpieces having irregular contours; normally performed with an endmill in a vertical spindle on a milling machine or with a profiler, following a pattern. See mill, milling machine.

  • shank

    shank

    Main body of a tool; the portion of a drill or similar end-held tool that fits into a collet, chuck or similar mounting device.

Additional Products from Tungaloy-NTK America, Inc.

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Tungaloy is expanding its DoTwistBall line of copy milling cutters to include additional diameters of shell mills. DoTwistBall is designed to ensure maximum machining reliability during complex 3D milling processes.

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