3D printing has become the medium of the new technological revolution as its applications diversify from printing food to weapons, from clothing to industrial products. It is also finding more uses in the medical space, including Orthotics and Prosthetics (O&P).
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The use of additive manufacturing (AM) in the medical industry is well established in making dental implants, artificial hip joints, and molds for invisible braces.
Taking stock of a surprising and challenging 2016, a number of trends may point to a future where manufacturing output increases while continuing to decentralize.
Getting fast, accurate data delivered to the palm of your hand is helping drive demand for enterprise resource planning (ERP) software. With the popularity of smartphones and tablets, manufacturers are capitalizing on the ability to get critical factory operational data from ERP, manufacturing execution systems (MES) and enterprise manufacturing intelligence (EMI) applications into the hands of the right decision-makers in a timely manner.
Enpress LLC (Eastlake, OH) selected ERP software from Epicor Software (Austin, TX) in March 2014 to gain real-time access to data to improve operational efficiencies internally and communications with its customers.
Aircraft maker Boeing Co. (Chicago) was among the participants in a new round of investing in a Massachusetts 3D printing company.
It’s not often you get the opportunity to witness rapid, life-impacting change, but for those of us who have been in the 3D printing industry over the last few decades, we have witnessed just that. In the last 20-plus years, 3D printing has changed the definition of manufacturing from merely “one-size-fits-all” to “customized” production and from “high-volume” to “high-complexity/low-volume”—a startling paradigm shift that has enabled many new applications for the manufacturing industry.
Implementing five-axis machining can be an excellent strategy for efficiently producing accurate, complex parts. However, it takes more than the right machine tool to realize the full potential of a five-axis process. In addition to the right machine, tooling and fixturing options, CAM software must be selected carefully.
Some in the medical industry are using silicone rubber molds made with a 3D-printed master pattern for low-to-mid production runs of cast polyurethane device housings.
Fabrisonic, Now 6 Years Old, Moves to Develop New Processes, Materials