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Artificial Intelligence (AI) has brought a new look to the hardware engineering domain. Using generative design algorithms, engineers put performance parameters and weight constraints together and the program generates complex, natural-looking topologies that are strong but lightweight. But when these designs become tangible parts, challenges arise: AI is great for creating the perfect design but without state-of-the-art fabrication systems these geometries cannot be made.
Traditional manufacturing methods, such as standard milling, struggle with deep undercuts, internal lattices, and complex cavities in generative structures. While 3D printing provides the geometrical freedom to replicate organic contours layer by layer, industrial-grade applications demand high-precision performance. Na