Our Solutions
Evolit’s 3D concrete printing systems and materials are engineered and optimized for performance, predictability, and material efficiency in real-world construction.
Automated Production
Automated concrete manufacturing driven by digital design
Evolit’s printing system uses digital models to guide automated concrete deposition layer by layer. Unlike traditional construction methods that rely on fixed molds and formwork that are entirely filled with concrete, our processes allows components to be produced directly from design data with material only where it is actually needed.
Because changes happen in software rather than physical tooling, designs can be refined efficiently without increasing material waste or production complexity. Automated printing improves consistency by reducing manual variation during manufacturing ensuring consistent and documentable material properties.

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Custom components for fair prices
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Fast workflows between design and manufacturing
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Leveraging design freedom with every print
Modular System Design
Designed to evolve through practical development
EVOLIT’s printing system is built around a modular architecture that allows individual components to be developed, tested, and improved independently. This approach supports continuous technical advancement while maintaining a stable and reliable production platform.
The modular nature of our system also enables focused collaboration with application-oriented academia and partners working on optimizing system modules. Insights from this work are evaluated against real world production requirements and directly integrated in production when they meet defined performance and reliability criteria in application. This ensures that technical optimizations feed directly back into practical use.
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Leveraging cooperation between academia and industry
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Streamlining results on a modular reference system
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Immediate industrial application of research results
The Material
Adaptable materials for local sourcing
EVOLIT develops concrete material formulations in close collaboration with research partners to support the use of locally available raw materials while maintaining controlled printability and performance.
Material recipes are designed around defined adjustment ranges, allowing variations in cement types, aggregates, and local constituents to be accommodated using established additives and formulation principles. This approach supports consistency across locations while enabling cost efficiency and reduced material transport.
