Continuous Fiber Manufacturing for Industry
The CFM4Industry project aims to revolutionize advanced composite manufacturing through automated Continuous Fiber Manufacturing technology for sustainable, cost-effective production across various industries.
Projectdetails
Introduction
The CFM4Industry project, promoted by Moi Composites, represents an industrialization and technology commercial launch project aiming to revolutionize advanced composite manufacturing through Continuous Fiber Manufacturing (CFM) technology. This patented, novel digital additive manufacturing framework aims at complete automation in advance of continuous fiber reinforced composites production, simplifying manufacturing workflows and reducing cycle and lead times.
Technological Integration
By integrating robotics and next-generation AM composite materials, Moi Composites evolves 3D printing standards, catering to functional products with significant weight reduction. This marks a pivotal shift towards cost-effective, waste-minimized, and sustainable composite production.
Project Objectives
The project's primary objective is the industrialization and commercialization of CFM technology in broad applications across industries such as:
- Aerospace
- Automotive
- Biomedical
- Oil & Gas
- Marine
This will be achieved through a strategic framework comprising:
- Development of tailored materials
- Implementation of a dedicated CAM path planning
- Refinement of the CFM printing apparatus
- Development of the technology center for system integration
Commitment to Sustainability
The relevance of CFM4Industry is evident in its commitment to technological innovation and sustainability. By eliminating the need for molds and significantly reducing material waste, CFM technology aligns with the program's goals of efficient and eco-friendly manufacturing.
Future of Manufacturing
Furthermore, the integration of robotics and digital fabrication showcases a forward-looking approach to advanced manufacturing. The CFM4Industry project represents a transformative step to revolutionize the AM industry, paving the way for a future of digitalized, sustainable, and economically efficient high-performance composite production.
Financiële details & Tijdlijn
Financiële details
Subsidiebedrag | € 2.499.999 |
Totale projectbegroting | € 3.707.822 |
Tijdlijn
Startdatum | 1-6-2024 |
Einddatum | 30-11-2026 |
Subsidiejaar | 2024 |
Partners & Locaties
Projectpartners
- MOI COMPOSITES SRLpenvoerder
Land(en)
Vergelijkbare projecten binnen EIC Accelerator
Project | Regeling | Bedrag | Jaar | Actie |
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Metal Additive Manufacturing with sinter-based Cold Metal Fusion Technology for mass production of metal partsCMF is a patented process that combines sinter-based Powder Metallurgy with Selective Laser Sintering, enabling cost-effective, scalable production of complex metal parts using existing plastic AM machines. | EIC Accelerator | € 2.099.562 | 2022 | Details |
Metal Additive Manufacturing with sinter-based Cold Metal Fusion Technology for mass production of metal parts
CMF is a patented process that combines sinter-based Powder Metallurgy with Selective Laser Sintering, enabling cost-effective, scalable production of complex metal parts using existing plastic AM machines.
Vergelijkbare projecten uit andere regelingen
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---|---|---|---|---|
Materials, 2D-3D flattening and Processing, to optimize the topology and create breakthrough zero-waste Composite structural solutionsThe ZeroWasteLIFE project aims to enhance the sustainability of composite materials through innovative design and recycling methods, targeting significant reductions in energy use and emissions. | LIFE Standar... | € 1.812.848 | 2023 | Details |
Next generation additive manufacturing systemsDit project ontwikkelt een innovatief 3D filament printsysteem met cobot-integratie om kosteneffectieve, flexibele productie van klantspecifieke componenten mogelijk te maken, met aanzienlijke groeikansen voor regionale bedrijven. | Mkb-innovati... | € 203.665 | 2019 | Details |
TOOLing materials, design, and process engineering, leading to improved sustainability and wider applications for the composites of tomorrowTOOL4LIFE aims to enhance composite manufacturing sustainability by developing fully recyclable thermoplastic tooling, reducing energy use and CO2 emissions while enabling cost-effective production. | LIFE Standar... | € 2.138.010 | 2022 | Details |
STUDIE NAAR NIEUWE TECHNOLOGIE VOOR SERIEMATIG 3D PRINTENFiberneering onderzoekt de opschaling en automatisering van hun unieke 3D printproces voor het kosteneffectief produceren van grote series vezelversterkte en niet-versterkte producten. | Mkb-innovati... | € 20.000 | 2020 | Details |
Automatisch & duurzaam composiet productieproces (Auduco)Het project richt zich op het ontwikkelen van een geautomatiseerd, duurzaam composiet productieproces met circulaire oplossingen voor composietafval, gericht op kosten-efficiëntie en milieuvriendelijkheid. | Mkb-innovati... | € 200.000 | 2017 | Details |
Materials, 2D-3D flattening and Processing, to optimize the topology and create breakthrough zero-waste Composite structural solutions
The ZeroWasteLIFE project aims to enhance the sustainability of composite materials through innovative design and recycling methods, targeting significant reductions in energy use and emissions.
Next generation additive manufacturing systems
Dit project ontwikkelt een innovatief 3D filament printsysteem met cobot-integratie om kosteneffectieve, flexibele productie van klantspecifieke componenten mogelijk te maken, met aanzienlijke groeikansen voor regionale bedrijven.
TOOLing materials, design, and process engineering, leading to improved sustainability and wider applications for the composites of tomorrow
TOOL4LIFE aims to enhance composite manufacturing sustainability by developing fully recyclable thermoplastic tooling, reducing energy use and CO2 emissions while enabling cost-effective production.
STUDIE NAAR NIEUWE TECHNOLOGIE VOOR SERIEMATIG 3D PRINTEN
Fiberneering onderzoekt de opschaling en automatisering van hun unieke 3D printproces voor het kosteneffectief produceren van grote series vezelversterkte en niet-versterkte producten.
Automatisch & duurzaam composiet productieproces (Auduco)
Het project richt zich op het ontwikkelen van een geautomatiseerd, duurzaam composiet productieproces met circulaire oplossingen voor composietafval, gericht op kosten-efficiëntie en milieuvriendelijkheid.