DOI of the published article https://doi.org/10.1007/s40964-025-01383-z
An Open-Source and Low-Cost Dual Extruder 3D Printer for Macroscale Biotic Materials
Low-Cost Dual Extruder 3D Printer
DOI:
https://doi.org/10.31224/5471Keywords:
biological materials, additive manufacturing, 3D Printer, multimaterial, sustainable materials, biotic materialsAbstract
This work presents the design and fabrication of a novel, dual-extruder biotic 3D printer tailored for precise deposition of natural biomaterials such as pectin, chitosan, and cellulose. Moving beyond the limitations of traditional thermoplastic extrusion which relies on non-renewable plastics and produces significant waste, this printer utilizes a syringe-based mechanical extruder to deposit viscous biotic material hydrogels. The integration of a dual-extruder system enables the creation of multimaterial prints, offering new possibilities for sustainable and biotic manufacturing. Designed with accessibility and versatility in mind, the system features user-friendly operation suitable for non-experts with open-source hardware and software. By providing a robust, customizable, and open-source platform, this work aims to empower researchers, educators, and innovators to advance biomaterials research and expand the reach of sustainable additive manufacturing. The printer fosters a collaborative community and lays the groundwork for further exploration of biological designs and materials.
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Copyright (c) 2025 Jesse de Alva, Markus Buehler

This work is licensed under a Creative Commons Attribution 4.0 International License.