Alloy Additive provides on‑demand large‑scale 3D metal printing using Wire Arc Additive Manufacturing (WAAM). Their system combines multi‑axis robotic arms, advanced arc welding, and proprietary control software to convert CAD files into high‑strength, complex parts from exotic alloys such as titanium, nickel, Inconel and Invar, eliminating the need for costly capital equipment and reducing lead times for low‑volume, high‑performance components.
Funding
Funding not disclosed
Founders
Product
Problem
Manufacturing large, complex metal parts traditionally requires expensive capital equipment, long lead times, and limited access to exotic alloys, making it difficult for industries to prototype or produce low‑volume high‑performance components quickly.
Solution
Alloy Additive offers on‑demand large‑scale 3D metal printing using Wire Arc Additive Manufacturing (WAAM). By integrating multi‑axis robotic arms, advanced arc welding, and proprietary control software, the service transforms digital design files into fully functional metal parts layer by layer. Real‑time monitoring of welding parameters ensures precision and repeatability, while the process supports high‑performance alloys such as titanium, nickel, Inconel, and Invar. This eliminates the need for costly capital investment and reduces production cycles, enabling customers to obtain high‑strength, geometrically complex components quickly and cost‑effectively.
Target Audience
Primary customers are manufacturers and engineering teams in aerospace, energy, defense, and other high‑performance sectors that require low‑volume, large‑scale metal parts with complex geometries and exotic material specifications.
Features
- Scalable WAAM system combining multi‑axis robotics with advanced arc welding for large‑format part fabrication
- Proprietary control software that monitors and adjusts welding parameters in real time for consistent quality
- Support for exotic high‑performance metals and alloys, including titanium, nickel, Inconel, Invar, and other specialty materials
- Automated workflow that slices CAD models and deposits material layer‑by‑layer to produce fully functional 3D components
- Precision and repeatability suitable for aerospace, energy, defense, and other demanding applications