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  • Composites | ORNL
    Carbon and ceramic composites are being produced and tested using additive manufacturing techniques to improve scalability for full-size components and prototyping Orbital Composites licensed the ORNL-developed technology for combining additive manufacturing with compression molding, known as AMCM
  • Carbon and Composites | ORNL
    Our greatest strength is the combined experience of our people in composite technologies and the resources directly available to us at the Oak Ridge National Laboratory
  • ORNL 3D printing method with composites enables origami-inspired . . .
    ORNL 3D printing method with composites enables origami-inspired structures without a mold The patent-pending hybrid method eliminates mold storage challenges, enables rapid deployment and facilitates production of flat-to-foldable structures integrating fiber reinforcement with 90% reduced cost
  • ORNL Advances Origami-Inspired Hybrid Composites With Scalable 3D . . .
    Oak Ridge National Laboratory (Oak Ridge National Laboratory) has demonstrated a new additive manufacturing approach that integrates origami-inspired design principles with hybrid composite materials, enabling the creation of complex, shape-transforming structures that are difficult or impossible to achieve using conventional manufacturing methods This pioneering method redefines advanced
  • Nanofibers yield stronger, tougher carbon fiber composites | Friends of . . .
    The ORNL approach combines both mechanical and chemical bonding to yield a 50% improvement in tensile strength and a nearly two-fold increase in toughness, essentially the durability of the material, through use of carefully tailored nanofibers
  • ORNL’s mold-free 3D printing method cuts composite fabrication time by . . .
    Researchers at the US Department of Energy’s Manufacturing Demonstration Facility (MDF) at Oak Ridge National Laboratory (ORNL) have developed a hybrid additive manufacturing method that removes the need for molds in composite fabrication, cutting production time by up to 95% and costs by around 90%, compared to conventional mold-based
  • ORNL Develops Breakthrough Carbon Nanofiber Technique to Strengthen . . .
    Researchers at the U S Department of Energy’s Oak Ridge National Laboratory (ORNL) have developed an innovative method using carbon nanofibers to dramatically enhance bonding in carbon fiber and other fiber-reinforced polymer composites
  • New origami-inspired 3D printing tech slash manufacturing time by 95%
    ORNL's origami-inspired 3D printing method creates lightweight composite structures without costly molds, cutting fabrication time by 95%
  • ORNL carbon nanofibers yield fiber-matrix interfacial bond improvement
    Researchers at the U S Department of Energy (DOE)’s Oak Ridge National Laboratory (ORNL) have announced development of a novel technique using carbon nanofibers to enhance binding in carbon fiber and other fiber-reinforced polymer (FRP) composites
  • Oak Ridge National Laboratory (via Public) Advanced 3D printing . . .
    ORNL's Steven Guzorek demonstrates the lab's hybrid 3D-printing method, which deposits an integration layer and composite material directly onto flexible nylon fabric, creating a mold-free, flat-to-foldable structure that reduces production costs and increases design flexibility





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