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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.

ARM Announces Awardees of First Funding Round

Pittsburgh, PA – June 12, 2018 — Advanced Robotics for Manufacturing (ARM) is proud to announce the awardees of its first round of project funding to strengthen U.S. manufacturing. Separate from ARM’s first official project call, these projects were selected upon ARM’s inception to begin generating timely impact on the national manufacturing landscape and serve as examples of ARM’s mission.

How Factory Intelligence is Evolving

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.

Simulation Software Spreads its Wings

When wrestling with vexing issues such as product complexity, lightweighting, advanced materials and new manufacturing methods, today’s manufacturing engineers increasingly use high-fidelity simulations to visualize solutions to these challenges.

Automated Coupling Slashes Robotic Welding Cell’s Downtime

There is no better way to resolve a problem than by eliminating it entirely. At least that’s how KTH Parts Industries Inc. (St. Paris, OH) regarded its decision to automate a manual equipment changeover process for its robotic welding cells.

Business Outlook for Tooling, Workholding on the Shop Floor Is Bright

Manufacturers are always looking for signs of what the economy and the business outlook have in store for them. Since the election of President Trump and, more recently, passage of the tax reform law in December, confidence among businesses of all sizes has been overwhelmingly positive.

Shrink-Fit Toolholder Offers Consistency When Setting Tools

Shrink-fit toolholding is a simple concept—an induction coil is adjusted and fits over the top of the toolholder. The induction coil heats the toolholder end of the shrinker, expanding the inside diameter, which opens the engagement bore (IDs of shrink-fit toolholders are smaller than the shank diameter of the cutting tool).