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Laser Marking: Going Places

The well-established field of laser marking continues to break new ground with expanding business opportunities in automotive, oil and gas, medical and other industries.

Advances in Machining Technology Enable Competitive Advantages for Brass

As a result of recent testing under real production conditions, brass proved to machine at extremely high speeds on today’s advanced machine tools with little evidence of tool wear, producing high-quality surface finishes and excellent chip control, reported the Copper Development Association (McLean, VA).

Hot Techniques for Cutting High-Temperature Alloys

For Dale Mickelson, Yasda product manager at Methods Machine Tools Inc. (Sudbury, MA) and author of several books on hard milling, tackling heat-resistant superalloys (HRSAs) requires the perfect combination of machine, workholding, tooling, tool paths and coolant.

The High-Speed Machining Benefits of Brass

US machine shops are potentially underutilizing the machinability of brass by as much as 85 percent in their part processing operations, reports a recent study from the Copper Development Association Inc. (McLean, VA).

Autonomous Mobile Robots Drive Manufacturing Versatility

Robotics have come a long way since the first industrial robot was installed at General Motors. Denise Ebenhoech, Regional Head of Advanced Robotics Applications at KUKA Robotics, sits down with Chris Mahar, Associate Editor, to discuss recent developments within mobile robots. From cleans rooms to job shops to moving entire airplane assemblies, autonomous mobile robots are helping manufacturers succeed in today’s advanced manufacturing landscape.

Additive Grows and Has Growing Pains

Additive manufacturing is both growing and coping with growing pains. Companies “have to find ways to streamline” polishing and other finishing processes of 3D printed parts, industry consultant Terry Wohlers said today during a speech at RAPID + TCT.

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.