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PressXAI-3D-MetalPrintTM Military and Construction.




Our work is independent, but compatible with the CMU and MIT strategic research.

CMU - Autonomous Robotic Metal Forming
https://arminstitute.org/projects/autonomous-robotic-metal-forming/
Description: The project team will address the challenge of low volume, high mix production of complex metallic components. Metallic components are commonplace in the commercial automotive sector, high-end auto sports, heavy-duty factory machinery, power plants, and in air, land, and sea-based military equipment. When replacement components are needed, particularly for aging systems, quality, cost, and lead-time are often unable to be balanced for an acceptable solution. The team will design and deploy an artificial intelligent (AI) robotic system capable of flexibly producing a myriad of component geometries in a timely and cost-effective manner.


MIT - Structural lattice additive manufacturing
http://digitalstructures.mit.edu/page/research#structural-lattice-additive-manufacturing
The structural performance of traditional 3D-printed parts is typically limited by nature of the ayer-by-layer construction. Such parts are anisotropic due to decreased adhesion between layers and the internal structure is uniform, not flexible. This project seeks to overcome these limitations by printing along the edges of a stress-optimized lattice. With this approach, larger-scale, lightweight parts can be printed with an optimal structure that can vary depending on a loading configuration. The results of this project may be promising for diverse fields including concrete rebar design, spaceframe prototyping for buildings, and generative art.

The fabrication component of the project includes designing a custom extruder for a six-axis robotic arm that excels in printing along hard-to-reach toolpaths in free air, with larger nozzle diameters. To complement this technology, a computational tool is in development to generate lattices and toolpaths for any part and its loading configuration.



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