3D printing has become the medium of the new technological revolution as its applications diversify from printing food to weapons, from clothing to industrial products. It is also finding more uses in the medical space, including Orthotics and Prosthetics (O&P).
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Wisconsin could capitalize on its strengths in sensors and controls to drive economic growth and support over 44,000 jobs annually in the advanced energy industry. That’s the conclusion of a report from “The Wisconsin Jobs Project: A Guide to Creating Jobs in Sensors and Controls for Advanced Energy.”
Automotive is one of the most highly-automated industries in the world, and it has been a leading force in expanding the use of industrial automation for decades. In fact, the first industrial robot in production was a Unimation UNIMATE that GM installed on a die-casting line in New Jersey in 1962.
Anaqua, Inc., a leading provider of Intellectual Property (IP) management, today announced that Diebold Nixdorf has selected the ANAQUA platform to manage its global IP portfolio from its operations in the U.S. and Germany.
There are plenty of manufacturing catchphrases: the Industrial Internet of Things (IIoT), Industry 4.0 and the Digital Factory. “Sometimes it’s a lot of buzzwords. Sometimes there’s a lot of reality behind it,” said Roger Hart, research and development manager of Siemens (Berlin and Munich, Germany).
When additive manufacturing first hit the market, some said it would eventually be the death of traditional, or subtractive, CNC machining. More than 30 years later, new machines are showing additive manufacturing as it really is—a complementary technology.
Increases in size and quantity of its orders led Wisconsin-based auto parts manufacturer Felss Rotaform LLC (New Berlin, WI) to expand operations through a new dual-robot machine-tending cell. The company is a supplier of precision parts using its rotary swaging, axial forming and tube end-forming processes.
Intelligent factories have existed since manufacturing’s historical inception, but intelligence—defined as the acquisition and application of manufacturing knowledge—resided only with the factory’s staff.
Have collaborative, six-axis robots reached a tipping point in establishing their niche in manufacturing? And could they be opening doors for manufacturers to adopt automation overall?
I’ve had quite a month, again, covering clever software and gadgets that continue to inch their way into performing tasks once reserved for humans. These tasks range from mundane material handling to highly skilled engineering design. It has made me think quite a bit about how our world of manufacturing and engineering will be affected by all this artificial cleverness.