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2018 or earlier clear Additive Manufacturing & 3D Printing clear Machining & Metal Cutting clear Stamping clear Forming & Fabricating clear Materials clear Assembly & Joining clear Electronics Manufacturing clear

Cutting Strategies for Airframe Components

Machining aerospace materials is a challenging task. Not only are machining operations tightly controlled, a wide variety of workpiece materials are employed, including aluminum, titanium, and carbon-fiber reinforced plastics (CFRPs). The following is a brief guide to cutting tool options for successful machining of airframe components. All of the tools referenced are manufactured by Mitsubishi Materials.

Who Controls Feedstock Used in 3D Printers?

Should the US Copyright Office oversee whether 3D printer operators can use feedstock not approved by their machine’s maker to turn out medical devices or airplane parts, or is that the role of the US Food and Drug Administration (FDA) and US Federal Aviation Administration (FAA), respectively?

Optical Comparators Adapt and Grow

Beware predictions of the demise of any technology. If the early 1920s saw the dawn of the optical comparator, there has been much speculation about its sunset. That was especially true when vision systems started hitting their stride a few years ago. Many could see optical comparators were superfluous with the use of vision systems. Many thought the sunset of optical comparators was imminent. Many were wrong. Why?

3D Printed Ceramics Reduce Cost, Leadtimes for Complex Aerospace Parts

PERFECT-3D might not appear to be an acronym, but it is, standing for Process Enabled Repeatability For Extended Life & Consistent Tools. PERFECT-3D’s process for 3D printing of ceramics for complex components resulted from the collaboration of its parent company, Renaissance Services Inc. (Fairborn, OH), with the US Department of Defense, a major investment casting company, a large chemical company, and an aircraft engine manufacturer.

AM Producers Seek Solutions to Production Barriers

Additive manufacturing holds potential for many possible new frontiers in the aerospace industry, and manufacturers in aviation and space flight are reaching for those new vistas. But they’re held back at less than warp speed due to a lack of awareness, unmet technological needs and the absence of a formal regulatory process in their highly regulated industry.

Oerlikon, Boeing to Collaborate in Additive Manufacturing Work

Oerlikon and Boeing to create standard processes for 3D-printed structural titanium aerospace. Five-year agreement supports creation of standard titanium additive manufacturing processes. Boeing has 50,000+ 3D-printed parts on commercial, space and defense products flying today.

Roush Looks to 3D Printing

Roush Enterprises (Livonia, MI) decided to go big with 3D printing. The company spent $4.5 million over 14 months on five additive manufacturing machines, software, facility upgrades and engineering personnel and equipment.

Tulane Spinoff Enables Smart QA in Polymers

Fluence Analytics (formerly Advanced Polymer Monitoring Technologies), a manufacturer of smart industrial and laboratory monitoring systems, recently released the third generation of its ACOMP, an automated system that performs continuous, real-time monitoring and characterization of polymers for 3D printing and other uses during manufacturing and post-processing.

Test and Measurement Gear Evolves to Measure AM Parts

Additive manufacturing (AM), or 3D printing, is a fast-growing field that offers many advantages over traditional techniques. It can create more complex parts than either machining or casting, can fuse different materials together, and is sometimes less expensive in low-volume or prototype applications.