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Lasers Enhance Traditional Machining

Metalworking machines are fast, powerful, and accurate, but they weren’t always as capable as they are today. Modern equipment is more nimble, flexible and adaptable. The machines collectively exceed the sum of their parts.

Beyond Niche: Alternative Manufacturing for Aerospace Parts

A typical commercial jetliner contains millions of discrete components, yet provided the plane arrives at its destination safely, on schedule, and hopefully without a screaming baby behind them, most of the flying public could care less how any of those parts were made.

FMS for Hybrid Manufacturing on the Horizon

As a provider of automation equipment and software, our company is immersed in this ongoing, revolutionary, data-driven ride, and we’re anticipating a new trend: our customers are not just automating their traditional subtractive methods.

HVCC Builds Gene F. Haas Center for Advanced Manufacturing Skills

Troy, N.Y.-based Hudson Valley Community College is building a $14.5-million, 37,000-sq.-ft. advanced manufacturing center to train CNC machinists, toolmakers, CNC programmers, and industrial maintenance personnel. The Gene F. Haas Center for Advanced Manufacturing Skills (CAMS) is expected to be completed this May and open in September.

Adopting MBD is About More Than Technology

There is a lot of promise in the coming adoption of Model-Based Definition (MBD) in industry. MBD is the practice of attaching useful information to a 3D CAD model, such as tolerances or material properties. This should be especially good news for manufacturing engineers.

VeriTX Announces Licensing Agreement

VeriTX Corp. announced today an agreement to license Moog Inc.’s VeriPart process which enables high integrity supply chain solutions.

SME Will Introduce iRAMP at RAPID + TCT to Accelerate Adoption of Additive Manufacturing

After decades of hype and predictions surrounding additive manufacturing (AM), AM is poised to be on the brink of becoming the disruptive technology that many have long expected. Disruptive technologies are often deemed too costly, less capable or too niche to replace incumbent technology. But over time, many of these technologies reach a tipping point and rapidly replace these incumbents.