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The Ins and Outs of In-Line Automated Inspection

The challenges to manufacturing as it evolves into the 21st century are now familiar, and impact how metrology must contribute. Manufacturers face uncertain production volumes with roller-coaster demand, shorter production runs and faster product development cycles. Automation, while alluring as a way to reduce cost, needs to adjust.

Measure It On The Machine

Why use a metrology device on or near a machine tool? It isn’t just useful for making sure a tool is present or monitoring tools for wear or breakage. On-machine measurement technologies can save time and money, by speeding up processes and eliminating extra personnel, and they are a critical step in the movement towards “lights-out” manufacturing.

Micro Manufacturing Keeps Shrinking the Envelope

Micro components continue to shrink in size, demanding ever-greater precision and improved handling of parts with sub-micron-sized features. New approaches in micro machining technology include higher-precision systems from traditional micro machining developers, as well as techniques using additive manufacturing processes and semiconductor wafer-scale technology on the smallest of micro parts.

Simulating is Believing

Simulation tools are making it much easier for manufacturers to optimize their processes, visualizing the entire path of production from NC metalcutting simulations through 3D design and factory-floor imaging.

Metrology Gets Connected

“Metrology and its relationship to manufacturing is rapidly evolving,” Ken Woodbine, president, Wilcox Associates, a brand of Hexagon Metrology (North Kingstown, RI), recently observed. “We are seeing larger quantities and faster speeds of measurement data collection. The next challenge is what to do with all that data.”

Quality Inspection and the CAD Connection

Modern manufacturing is rapidly adopting model-based definition (MBD). When employing an MBD strategy, the CAD model becomes more than the nominal to which all parts are measured and inspected against. MBD keeps the all-important digital thread intact—from design to manufacturing to inspection and quality reporting.

Digging Deeper into Additive Manufacturing -COVID-19 and more

Mark Kirby, Registered Professional Engineer and Additive Manufacturing Business Manager for Renishaw Canada and Bruce Morey, Senior Technical Editor for Manufacturing Engineering Magazine discuss the pluses and minuses of the still-emerging 3D printing technology that is sweeping the business press. We will take a look at common misconceptions and what, in our opinion, could be things to watch out for if any of our listeners are thinking about adopting 3D printing for their applications.

How Does FFF Metal Printing Differ From DMLS?

Kevin Smith, senior commercial application engineer at Markforged, explains how the Markforged Metal X 3D printing process works, for starters. He also gets into how FFF metal printing differs from DMLS and other processes. And he goes over materials that can be printed on the Metal X, as well as the applications that are best suited for metal 3D printing.

New Developments from MakerBot

SME interviewed onsite at FABTECH Shawn Miely, Senior Marketing Manager for Pro Segment of MakerBot. Founded in 2009, MakerBot was one of the first companies to make 3D printing accessible and affordable with its first 3D printer, the Cupcake CNC. This podcast features a discussion about the new MakerBot Method X in general, new materials available, and additive manufacturing for professionals.

Eliminating the Post-Processing Headache

Additive manufacturing, or 3D printing, has been a game changer in how products are designed, produced and manufactured. But 3D printed parts don’t just come out of the machine ready to use, sometimes intensive manual post-processing is required. Jeff Mize, CEO of PostProcess Technologies, sits down with Chris Mahar, Associate Editor, to discuss their automated post-processing technology and how fully digitalized additive manufacturing is further benefiting the industry.