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Dig Deep Into the IMTS 2016 Toolbox for Innovative Solutions

In conventional metal (material) removal processes like milling, turning, drilling, boring, and grinding, the challenge is always to hold the tool securely and rigidly against a fixtured workpiece without interfering with the process.

The Global Yarns Race Is On

As the Fourth of July drew to a close, Nanocomp Technologies employees were glued to a live newsfeed from JPL/NASA.

Lifting Devices Reduce Incubator Assembly Labor

Thermo Fisher Scientific, a leading manufacturer of laboratory technology, designed new incubators to cultivate human and animal cells. With 55,000 employees worldwide and group sales of $17 billion, Thermo Fisher Scientific is one of the world’s largest providers of laboratory and analysis technology. The company headquarters are located in Waltham, MA, near Boston.

Plastic Injection Molder Turns to Gun Making

In 2006, Jim Pontillo, founder of TRA Medical Inc. (Placentia, CA), saw two distinct trends: his medical mold-making workload was diminishing and demand for guns and gun components was rising. Sizing up TRA Medical’s core competencies, Pontillo saw an opportunity for growth in the development and production of 9-mm handguns. Today, these guns are branded and sold under their own brand FMK Firearms, which is a stand-alone business.

DIY: Creating Through-Tool Coolant Capability

New retrofit systems make it possible to quickly, easily and cost effectively transform the standard external-coolant live tooling heads on turning machine turrets into those with through-tool-coolant capability. And shops that have done the retrofit are experiencing longer tool life, more efficient chip control and less heat generation.

The Increasingly Perfected Science of Machining Composites

A 1965 Shelby Cobra 427 shown at the Detroit Auto Show was additively manufactured on a Cincinnati BAAMCI machine by DOE’s Oak Ridge National Laboratory (ORNL), one of seven founding members of the Institute for Advanced Composites Manufacturing Innovation. The Detroit IACMI branch will get $70 million to develop a robust supply chain to improve materials, handling, and machining properties for automotive composites.