Carbon negative concrete 3D printing
Hyperion's innovative technology aims to revolutionize concrete 3D printing by providing a carbon-negative solution that reduces CO2 emissions by 100% and cuts costs by 50%.
Projectdetails
Introduction
Concrete accounts for 8% of global CO2 emissions. Industry players are under pressure to meet the net zero CO2 emission target by 2050 and seek all possibilities to reduce their CO2 emissions.
Industry Shift
In light of the fact that the industry is shifting towards prefabricated elements, these can be made by 3D concrete printing. However, 3D printing today has significant limitations.
Hyperion's Breakthrough Technology
Hyperion offers a breakthrough technology that will revolutionize the concrete 3D printing industry. The solution addresses all the bottlenecks of the industry by providing:
- A green, carbon-negative 3D printable concrete that is code compliant.
- A robotic printing head that monitors the printing process.
- A new design methodology that shortens design time and ensures printability.
Environmental Impact and Cost Efficiency
Overall, Hyperion’s technology can reduce the CO2 emissions of concrete element production by 100%, offering it at 50% of today’s cost of 3D printable concretes, which are more carbon-intensive than conventional concretes today.
Financiële details & Tijdlijn
Financiële details
Subsidiebedrag | € 2.373.874 |
Totale projectbegroting | € 2.373.874 |
Tijdlijn
Startdatum | 1-10-2024 |
Einddatum | 30-9-2026 |
Subsidiejaar | 2024 |
Partners & Locaties
Projectpartners
- HYPERION ROBOTICS OYpenvoerder
Land(en)
Vergelijkbare projecten binnen EIC Accelerator
Project | Regeling | Bedrag | Jaar | Actie |
---|---|---|---|---|
TOPOFORM – ROBOTIC PRINTING OF LARGE-SCALE TOPOLOGY OPTIMISED COMPOSITE CONSTRUCTION FORMWORKTopoForm aims to revolutionize concrete construction by providing lightweight, cost-effective, and eco-friendly specialty formwork through robotic 3D printing, reducing emissions and waste significantly. | EIC Accelerator | € 2.356.243 | 2024 | Details |
TOPOFORM – ROBOTIC PRINTING OF LARGE-SCALE TOPOLOGY OPTIMISED COMPOSITE CONSTRUCTION FORMWORK
TopoForm aims to revolutionize concrete construction by providing lightweight, cost-effective, and eco-friendly specialty formwork through robotic 3D printing, reducing emissions and waste significantly.
Vergelijkbare projecten uit andere regelingen
Project | Regeling | Bedrag | Jaar | Actie |
---|---|---|---|---|
ADDITIVE TO PREDICTIVE MANUFACTURING FOR MULTISTOREY CONSTRUCTION USING LEARNING BY PRINTING AND NETWORKED ROBOTICSAM2PM aims to revolutionize multistorey construction through 3D concrete printing, achieving 50% material reduction and significant CO2 savings while enhancing sustainability and efficiency. | EIC Pathfinder | € 3.605.988 | 2024 | Details |
Industry 4.0 - Driven Quality Assurance for Additive Manufacturing and 3D Concrete PrintingHet project ontwikkelt een numeriek model om de kwaliteit van 3D geprinte betonconstructies te voorspellen en zo productie te optimaliseren. | 1.1 - Het ve... | € 362.929 | 2024 | Details |
RED: Reinforcement Entrainment DeviceHet project ontwikkelt een automatisch systeem voor het integreren van kabelwapening in 3D-geprinte betonconstructies, ter bevordering van digitalisering. | Mkb-innovati... | € 193.557 | 2021 | Details |
CARBon-negative COMpression dominant structures for decarbonized and deconstructable CONcrete buildingsCARBCOMN aims to revolutionize zero-carbon concrete structures through innovative digital design and carbon-negative materials, enhancing sustainability and circularity in construction. | EIC Pathfinder | € 3.603.457 | 2024 | Details |
Haalbaarheidsstudie 3DFREESBETONVertico ontwikkelt een natfrees module om de oppervlaktekwaliteit van 3D-geprint beton te verbeteren en efficiëntie te verhogen. | Mkb-innovati... | € 20.000 | 2024 | Details |
ADDITIVE TO PREDICTIVE MANUFACTURING FOR MULTISTOREY CONSTRUCTION USING LEARNING BY PRINTING AND NETWORKED ROBOTICS
AM2PM aims to revolutionize multistorey construction through 3D concrete printing, achieving 50% material reduction and significant CO2 savings while enhancing sustainability and efficiency.
Industry 4.0 - Driven Quality Assurance for Additive Manufacturing and 3D Concrete Printing
Het project ontwikkelt een numeriek model om de kwaliteit van 3D geprinte betonconstructies te voorspellen en zo productie te optimaliseren.
RED: Reinforcement Entrainment Device
Het project ontwikkelt een automatisch systeem voor het integreren van kabelwapening in 3D-geprinte betonconstructies, ter bevordering van digitalisering.
CARBon-negative COMpression dominant structures for decarbonized and deconstructable CONcrete buildings
CARBCOMN aims to revolutionize zero-carbon concrete structures through innovative digital design and carbon-negative materials, enhancing sustainability and circularity in construction.
Haalbaarheidsstudie 3DFREESBETON
Vertico ontwikkelt een natfrees module om de oppervlaktekwaliteit van 3D-geprint beton te verbeteren en efficiëntie te verhogen.