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2018 or earlier clear Smart Manufacturing clear Welding & Cutting clear Controls clear Materials clear

Advanced Technology Depends on Controls, Design

Nothing seems so obvious in subtractive machining than that milling and turning processes really are very different: single point vs. multipoint tools; rotating workpiece vs. rotating tool; static tool vs. rotating tool, etc.

Product Innovation is on Tap. So How Fast Can Spigot Flow?

The Fourth Industrial Revolution has begun, and there is wide agreement this revolution will involve cyber-physical systems with human-machine interaction and lots of data. But many still wonder what the revolution is about and what to expect as consumers and manufacturers.

Smart Manufacturing in the Age of Digitalization

Manufacturing competitiveness depends on working faster, smarter, and better, with the convergence of the Industrial Internet of Things (IIoT) devices and smart sensors, software and data analytics.

Pumping Up CNC Productivity

To compete in the fast-paced world of manufacturing, machinists look for no-compromise machine controls offering fast, precision programming of machine tools. The latest CNC systems from machine control developers include a new dual-function milling and turning control and several updated controls with embedded software routines that can significantly speed up CNC programming.

Communicating with the Shop Floor

For years, the manufacturing industry has debated the pros and cons of opening up manufacturing networks, but concerns over virus vulnerabilities and the stability of PCs on the network largely limited open-architecture PC controls’ progress and kept entrenched proprietary systems in place.

Machine Tool Control

Shop efficiencies start with the machine tool controller, as today’s CNC equipment offers machine operators myriad tools for improving part surface finishes, allocating machine time, and cutting job cycle times.

Speeding Up the Additive Manufacturing Design Process with New CAD/CAM Tools

PowerMill 2019 provides a dedicated suite of tools to program high-rate additive processes—commonly known as directed energy deposition [DED]. The DED process utilizes a CNC machine tool or industrial robot that can focus a power source—typically laser, arc or electron-beam—at a point in space.

Better Together: Machinists and Programmers

Spend enough time on shop floors and you’ll learn about the two different groups of skilled workers that reside there. On one side are the old-school machinists—skilled craftspeople who use their hands, eyes and ears to guide machine tools. On the other side are the programmers and engineers.