Two of the essential characteristics of any successful machine shop are speed and accuracy, but depending on the application, they can be relative terms.
It’s not too difficult to understand the importance of machining aluminum for aerospace applications. High volumes of aluminum are used, principally for structural components.
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Additive manufacturing, and AM machines, have gone mainstream over the past five years. The technology has advanced. More materials, including metals and composites, are being used for 3D printing, where parts are made from a digital design.
SkillsUSA wields a large shovel, but we have a big hole to fill. That hole is in the American economy and it is called the skills gap—the widening gap between the jobs available and the skilled workers ready to fill them.
California Polytechnic State University’s (Cal Poly) Industrial and Manufacturing Engineering (IME) Department is ensuring its students are prepared for the future of fabrication by integrating abrasive waterjet into its curriculum.
A single phone call changed my life forever. In 2003, I was sitting in my office at a fuel cell manufacturing company where I was vice president of operations. A voice on the other end of the line said, “Hello, my name is Mark Tomlinson. I’m calling as a representative of the SME Manufacturing Enterprise Council.”
Nobody knows just yet how the auto industry will adopt 3D printing. But Desktop Metal Inc. (Burlington, MA) is in a better position than most to make an educated guess.
For certain machining applications, off-the-shelf cutters come up short. Here’s how to increase productivity, reduce costs, and improve part quality with a custom cutting tool solution.
According to McNamara, director of sales for Doosan Machine Tools America (Pine Brook, NJ), the most important tools in getting customers to move into five-axis machining are features within the control that make it simple to create, understand and prove out machining programs.