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New materials

The development of new materials is gradually demonstrating characteristics such as high purity, nanostructuring, compositing, and high performance, and has broad application prospects in the domains of aerospace, micro-nano electromechanical systems, new energy, and new medicine. Micro-nano 3D printing technology is expected to break the limitations of traditional composite material forming and can significantly shorten the research and development cycle of new materials.

Application Cases

SiOC Ceramic Precursor_Screw Icositetrahedron

  • 10 μm

    Optical resolution

  • 150 μm

    wall thickness

SiOC Ceramic Precursor_Screw Icositetrahedron

With overall dimensions of 10 × 10 × 10 mm³ and a wall thickness of 150 μm, PμSL 3D printing technology combined with polymer precursors can effectively produce silicon carbide ceramics that offer both high precision and excellent mechanical properties.

  • 10 μm

    Optical resolution

  • 150 μm

    wall thickness

Quartz glass components

  • 2 μm

    Optical resolution

  • 0.8-3 μm

    Extreme Machining (Post-Sintering)

Quartz glass components

PμSL technology, when combined with precursors, can be used to fabricate quartz glass devices with various complex structures, such as lattices, spiral polyhedrons, and convex lenses. After sintering, the minimum feature size ranges from 0.8 to 3 μm, with an overall size of 1 × 1 × 1 mm³.

  • 2 μm

    Optical resolution

  • 0.8-3 μm

    Extreme Machining (Post-Sintering)

GelMa DS Hydrogel_Vascular Scaffold

  • 10 μm

    Optical resolution

  • 100 μm

    Minimum aperture

GelMa DS Hydrogel_Vascular Scaffold

Overall dimensions: 10 × 12 × 2 mm³; minimum pore diameter: 100 μm. PμSL technology, combined with modified hydrogel bio-ink, enables the high-precision fabrication of bio-scaffolds with complex structures and excellent biocompatibility for applications in tissue engineering and regenerative medicine.

  • 10 μm

    Optical resolution

  • 100 μm

    Minimum aperture

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