London-based software program agency Aibuild has shaped a strategic partnership with German producer Reichenbacher Hamuel GmbH. The collaboration goals to combine Aibuild’s AI-powered platform with Reichenbacher’s industrial-scale machines, creating a wise hybrid manufacturing ecosystem that mixes automated toolpath optimization with superior multi-axis manufacturing capabilities.
“Our partnership with Reichenbacher represents a pivotal convergence of {hardware} excellence and clever software program automation,” stated Michail Desyllas, COO and Co-founder of Aibuild. “Reichenbacher’s hybrid machines are distinctive platforms for customized manufacturing, and by integrating our AI-driven toolpath and thermal simulation capabilities, we’re enabling producers to realize unprecedented ranges of precision, effectivity, and suppleness in complicated part manufacturing.”


Remodeling European Manufacturing with AI and Hybrid Techniques
Conventional hybrid CNC methods usually require in depth guide programming and specialised operator information to handle the transition between additive and subtractive processes. Aibuild’s software program automates these steps, optimizing layer deposition and thermal administration whereas lowering materials waste and manufacturing time.
The answer is especially related for producers of aerospace tooling, automotive fixtures, marine composites, and architectural parts, the place precision and effectivity are essential.
Dr. Alexander Kawalla-Nam, Head of Additive Manufacturing Applied sciences at Reichenbacher Hamuel GmbH, emphasised the potential of the partnership. “This partnership marks the start of a brand new period in manufacturing — the place intelligence, precision, and creativity converge. At Reichenbacher, now we have all the time believed that the way forward for manufacturing lies in uniting the bodily and digital worlds. By combining our hybrid machine and CNC milling experience with Aibuild’s AI-driven automation, we’re turning that imaginative and prescient into actuality. Collectively, we’re creating methods that suppose, adapt, and optimize in actual time — enabling producers to maneuver past standard limitations and reimagine what’s doable in industrial-scale manufacturing. It’s not nearly making elements; it’s about reshaping how concepts turn into actuality,” stated Dr. Alexander Kawalla-Nam, Head of Additive manufacturing applied sciences of Reichenbacher Hamuel GmbH.


Daghan Cam, CEO and Co-founder of Aibuild, added: “The convergence of Aibuild’s platform with Reichenbacher’s confirmed {hardware} excellence creates one thing genuinely transformative. For SMEs and specialised producers working in DACH and throughout Europe, this partnership delivers the instruments wanted to compete with bigger producers whereas sustaining the flexibleness and customization that defines their market place.”
Advancing Hybrid Additive/Subtractive Manufacturing
Hybrid additive/subtractive manufacturing continues to evolve throughout analysis and trade, with current initiatives demonstrating how integration of simulation, automation, and large-scale manufacturing can rework manufacturing workflows.
The Advert-Proc-Add II consortium, involving establishments from Austria, Germany, and Belgium, has developed new technical frameworks to optimize hybrid additive/subtractive manufacturing (ASM). The venture targeted on predictive simulation, materials effectivity, and automatic workflow planning. Improved help buildings and simulations for thermal distortion, stress, and geometry improve manufacturing accuracy and effectivity. By linking simulation outputs to machining methods, Advert-Proc-Add II automates hybrid workflows, reduces post-processing, shortens growth cycles, and improves half repeatability, supporting broader adoption in aerospace, tooling, and medical purposes.
In parallel, Hybrid Manufacturing Applied sciences (HMT) has introduced hybrid AM into large-scale, operational settings. Throughout Trident Warrior 2025, HMT showcased its AMBIT XTRUDE polymer composite 3D printing system on the Naval Postgraduate College’s CAMRE facility in Monterey, California. Mounted on a Navy-owned CNC machine, the system allows hybrid additive-subtractive manufacturing of meter-scale elements, similar to drone boat hull sections. Utilizing pellet-fed extrusion, the AMBIT XTRUDE achieves volumetric deposition charges as much as 2,000 occasions sooner than commonplace desktop polymer printers, whereas fast switching to milling permits exact ending in minutes. This demonstration highlights the sensible, high-speed scalability of hybrid manufacturing for protection and industrial purposes.
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