Publication data
Type Paper
Title Open Source Waste Plastic Granulator
Year 2019
Language English (en)
License CC-BY-SA-3.0
Cite as Arvind Ravindran, Sean Scsavnicki, Walker Nelson, Peter Gorecki, Jacob Franz, Shane Oberloier, Theresa K. Meyer, Andrew R. Barnard and Joshua M. Pearce. Open Source Waste Plastic Granulator. Technologies 2019, 7(4), 74; https://doi.org/10.3390/technologies7040074 open access
Project data
Authors Arvind Ravindran
Sean Scsavnicki
Walker Nelson
Peter Gorecki
Jacob Franz
Shane Oberloier
Theresa K. Meyer
Andrew R. Barnard
Joshua M. Pearce
Location Michigan, USA
Status Designed
Modelled
Prototyped
Verified
Verified by MOST
re:3D
Links https://www.academia.edu/40616354/Open_Source_Waste_Plastic_Granulator&#124
https://www.mdpi.com/2227-7080/7/4/74&#124
OKH Manifest Download
Device data
Design files https://osf.io/a2tk9/ OSF.io
Hardware license CERN-OHL-S
Certifications Start OSHWA certification

In order to accelerate deployment of distributed recycling by providing low-cost feed stocks of granulated post-consumer waste plastic, this study analyzes an open source waste plastic granulator system. It is designed, built, and tested for its ability to convert post-consumer waste, 3D printed products and waste into polymer feedstock for recyclebots of fused particle/granule printers. The technical specifications of the device are quantified in terms of power consumption (380 to 404 W for PET and PLA, respectively) and particle size distribution. The open source device can be fabricated for less than $2000 USD in materials. The experimentally measured power use is only a minor contribution to the overall embodied energy of distributed recycling of waste plastic. The resultant plastic particle size distributions were found to be appropriate for use in both recyclebots and direct material extrusion 3D printers. Simple retrofits are shown to reduce sound levels during operation by 4dB-5dB for the vacuum. These results indicate that the open source waste plastic granulator is an appropriate technology for community, library, maker space, fab lab, or small business–based distributed recycling.

Keywords

Circular economy; Distributed recycling; Energy conservation; Polymer recycling; Sustainable development; distributed manufacturing; life cycle analysis; recycling; recyclebot; 3-D printing; Open source hardware; Open hardware; RepRap; Recycling; Polymers; Plastic; Recyclebot; Waste plastic; Composites; Polymer composites; Extruder; Upcycle; Materials science;additive manufacturing; distributed manufacturing; open-source; waste plastic; extruder; upcycle; granulator; shredder; fab lab; open-source; polymers; recycling; waste plastic; upcycle; circular economy

In the news

See also

RepRapable Recyclebot and the Wild West of Recycling

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Recycling Technology

Distributed Recycling LCA

Literature Reviews

Externals