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2018 or earlier clear Manufacturing Management clear Automation clear Lasers clear Materials clear

Lasers Grow Manufacturing

Today, laser technology in manufacturing touches all of our lives on a daily basis; lasers cut air bag material and weld air bag detonators for our in-car safety; lasers weld the batteries in many of our mobile devices; lasers drill aero-engine components for planes; lasers cut the glass for our smart phones and tablets screens; lasers weld the drivetrains in our cars and trucks; lasers cut medical stents that increase and enhance our lives, just to name a few.

Converged Networking Drives Automotive Operational Efficiencies

Automatic parallel parking, lane-keeping assistance, sensor-enabled maintenance, infotainment equipment and other advanced electronics are helping many automotive manufacturers differentiate their vehicles in a fiercely competitive, global marketplace.

Lasers Target New Medical Applications

Lasers — well-established tools in the manufacture of medical devices—are continuing to break ground by producing smaller, more precise and more functional parts thanks to faster pulse speeds at lower cost, new applications and the marriage of laser processing to Swiss-style machining.

Getting Connected

As the IIoT moves from theory to reality, managing shop-floor data grows in importance.

Making Sense of the Digital Thread

Siemens PLM has a strategy to reinvent manufacturing by threading digital information from concept, through design to monitoring performance in the field. It is easy to get confused as to what all this means, but some concrete examples and definitions help explain it all.

Methods to Show Automation Cell

On May 9 -11 2017, at the RAPID + tct Show Methods Machine Tools Inc., a leading supplier of precision machine tools, 3D printing technology and automation, will be showcasing a revolutionary cell solution designed to make quantum leap production increases in 3D manufacturing throughput.

Coatings Expand Cutting Tool Capabilities, Reach New Markets

When first introduced in the late 1970s, cutting tool coatings—especially titanium nitride (TiN)—were embraced by tool manufacturers for their ability to extend tool life. As workforce materials have expanded from conventional ferrous and nonferrous metals to exotic alloys, composites, ceramics, and others, coatings have likewise progressed and, thanks to new formulations and deposition methods, are extending cutting tool capabilities as well as tool life.

Laser Takes Heat Out of Tough Tool Grinding

Cutting tool maker Shape-Master Tool Co. (Kirkland, IL) needed to expand its tool grinding capability beyond that of its conventional machines or run the risk of losing work to the competition.