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2017 or earlier clear Machining & Metal Cutting clear Tooling & Workholding clear Smart Manufacturing clear Welding & Cutting clear Lasers clear Materials clear

Tooling a Large Machine for Turbine Shaft Machining

The timeframe and sheer size of the workpieces required Weingärtner to scale up one of its advanced technology mpmc 1200 machining centers to be able to machine giant turbine shafts used in gas/steam turbine plants.

Japanese, German Innovators Broaden Work That Stars ‘Digital Companion’

In preparation for mass customization, for starters, Japanese and German tech research officials today committed to expanding their joint work to establish a “social-technical or maybe ‘cyber-social’ environment where ‘digital companions’ and production lines communicate with humans” working in manufacturing, Andreas Dengel said in an interview with Smart Manufacturing magazine here at the CeBIT (Centrum der Büroautomation und Informationstechnologie und Telekommunikation) fair.

Gap in industrial IoT stack presents edge challenges

Many people want to implement IoT in their factories, and with the abundance of IoT platform technologies out there, they think it’s a breeze. But many challenges await those who don’t think things through carefully—challenges for which traditional IoT platforms do not have effective solutions.

Raising the Stakes with High-Speed Aerospace CNCs

In the aerospace world, as in all sectors of manufacturing, the race is on for faster, more automated and connected machining operations. Aerospace builders have steadily pushed for more automotive-like automation over the past several years in order to improve productivity and more effectively handle large order backlogs in commercial aviation.

The Digitization of Modern Manufacturing

Today, the ideal factory can achieve levels of self-controlling (and perhaps self-learning) production processes, in which production reacts autonomously to changes or faults and takes appropriate measures.

Cutting Tools for Use with New Aluminum-Compound Materials

New work materials are developed continually to improve the capabilities of finished parts, making them lighter and stronger, among other properties. When these materials catch on, cutting tools must adapt to their often challenging properties.

The Increasingly Perfected Science of Machining Composites

A 1965 Shelby Cobra 427 shown at the Detroit Auto Show was additively manufactured on a Cincinnati BAAMCI machine by DOE’s Oak Ridge National Laboratory (ORNL), one of seven founding members of the Institute for Advanced Composites Manufacturing Innovation. The Detroit IACMI branch will get $70 million to develop a robust supply chain to improve materials, handling, and machining properties for automotive composites.