New Research on Construction Materials Reveals Crucial Factor in 3D Printing Success
Investigators at the Technical University Berlin (TU Berlin) have published a new report detailing their research on the influence of sample preparation on geopolymers composed of fly ash and ground granulated blast furnace slag designed for extrusion-based 3D printing. The study found that the mixing sequence of liquid components plays a critical role in shaping the 3D-printability of geopolymers. Specifically, research revealed that pre-mixing sodium hydroxide with water slows down the geopolymerisation rate, while a homogeneous distribution of liquids accelerates geopolymerisation, making the material unsuitable for printing.
Key Takeaways:
- The mixing sequence of liquid components is crucial in determining the 3D-printability of geopolymers.
- Pre-mixing sodium hydroxide with water slows down the geopolymerisation rate, prolonging printability.
- A homogeneous distribution of liquids accelerates geopolymerisation, making the material unsuitable for printing.
- Structural condensation of the geopolymer begins as rheological properties shift, rendering the material unsuitable for printing.
- Optimised mixing strategies impact the suitability of the geopolymer for extrusion-based 3D printing.
- The research has significant implications for the development of 3D printing technologies and materials.
- The study was funded by the Government of the Federal State of Berlin.
- Additional authors for the research include Dietmar Stephan.
- The research was conducted at the Technical University Berlin (TU Berlin).
Statistics:
- 22():e04352: The reference number for the research article published in Case Studies in Construction Materials.
- 2025: The year in which the research was conducted and published.
- 3D printing: The type of printing technology studied in the research.
- Geopolymers: The materials used in the study, comprised of fly ash and ground granulated blast furnace slag.
- Extrusion-based 3D printing: The specific type of 3D printing technology studied in the research.
Sources:
- The role of mixing sequence in shaping the 3D-printability of geopolymers. Case Studies in Construction Materials, 2025,22():e04352.
- VerticalNews. New Research on Construction Materials Research Described from Technical University Berlin (TU Berlin) (The role of mixing sequence in shaping the 3D-printability of geopolymers).
- Journal of Engineering. July 7, 2025; p 309.