DIW Ceramic 3D Printer – Direct Ink Writing System for Research-Grade Ceramic and Gel Printing
Print advanced ceramics, bio-inks, and soft materials with pneumatic extrusion and UV-assisted curing. Ideal for labs developing next-gen structures in tissue engineering, electronics, and material science.
✅ Versatile material compatibility
✅ Stable gel and slurry deposition
✅ Interchangeable extrusion nozzles


DIW Ceramic 3D Printer – Direct Ink Writing System for Research-Grade Ceramic and Gel Printing
Print advanced ceramics, bio-inks, and soft materials with pneumatic extrusion and UV-assisted curing. Ideal for labs developing next-gen structures in tissue engineering, electronics, and material science.
✅ Versatile material compatibility
✅ Stable gel and slurry deposition
✅ Interchangeable extrusion nozzles
Versatile Material Deposition
Supports ceramics, bio-gels, graphene, and more for custom structures.
Precision Control
Enhanced with pneumatic extrusion and UV curing for stable deposition.
Ideal for Bioengineering
Perfect for bio-inks and tissue printing applications.
Customizable Extrusion Nozzles
Designed to handle a wide variety of materials and formulations.
All DIW 3D printer
Why Choose Our DIW 3D Printer?
Versatile Material Compatibility
Our DIW 3D printer supports a wide range of materials, including ceramics, bio-inks, graphene, and more, enabling the creation of custom structures for various research and industrial applications.
Precise Material Deposition
Equipped with pneumatic extrusion and UV curing technology, our printer provides precise control over the deposition of materials, ensuring high-quality results for complex designs.
Ideal for Bioengineering and Custom Prototyping
Perfect for bioengineering, tissue printing, and custom prototyping, our DIW printer allows for the development of biocompatible structures with a high degree of accuracy and flexibility.
Direct Ink Writing Ceramic 3D printer
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Application Highlights
With open material compatibility and micron-level accuracy, DLP 3D Ceramic printing makes it possible to print intricate geometries using oxide ceramics, piezoelectrics, and bioceramics—directly serving applications in healthcare, electronics, aerospace, and beyond.
Material Compatibility
