
LEAP 71
@leap_71 • 11,054 subscribers
We create computational models for engineering to build the world's most advanced machines.
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Multimaterial metal Additive Manufacturing will unlock entirely new designs for electromagnetic systems. Here’s another Noyron-engineered example. We produced this motor with the Fraunhofer-Gesellschaft IGCV process. It needs a third, insulating material to be functional.
LEAP 7192,903 views • 1 month ago

An animation of a Noyron-generated multi-material 3D-printed spherical reluctance motor. As multi-metal-and-insulator 3D printing becomes available, sophisticated electromagnetic systems like these can be built. Created by the Noyron Large Computational Engineering Model.
LEAP 7124,918 views • 1 month ago

Impossible to build just 12 months ago, Farsoon Technologies manufactured our hypersonic precooler last October. Standing more than 1.5m high (5ft), it is one of the most complex, probably THE most complex metal-printed part ever created. Noyron allows us to engineer these objects, but it takes intense collaboration to push the limits of the production process, and encode the real life constraints into to our Computational Engineering Model. Shown last at Formnext in Germany, you will now be able to see at TCT Asia in Shanghai (March 17-19).
LEAP 7156,634 views • 7 months ago

Huge shoutout to Farsoon Technologies for being able to manufacture our alien artifact. Just a year ago, nobody could have built this. The amount of detail and the sheer size of this metal printed hypersonic precooler is pushing the limits of what is imaginable today. Noyron FTW. #Formnext
LEAP 7151,854 views • 9 months ago

It’s great to finally see the manufactured result in person: the largest monolithic aerospike ever produced, 200 kN, 1 m tall, generated by the Noyron Large Computational Engineering Model and produced by HBD Additive Manufacturing on one of the world’s largest metal 3D printers.
LEAP 7128,982 views • 5 months ago
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