Imperial College London

DrConnorMyant

Faculty of EngineeringDyson School of Design Engineering

Senior Lecturer
 
 
 
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Contact

 

connor.myant Website

 
 
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Location

 

M224Royal College of ScienceSouth Kensington Campus

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Summary

 

Publications

Citation

BibTex format

@inproceedings{Hong:2022:10.1145/3491101.3519782,
author = {Hong, F and Hodges, S and Myant, C and Boyle, DE},
doi = {10.1145/3491101.3519782},
publisher = {ACM},
title = {Open5x: accessible 5-axis 3D printing and conformal slicing},
url = {http://dx.doi.org/10.1145/3491101.3519782},
year = {2022}
}

RIS format (EndNote, RefMan)

TY  - CPAPER
AB - The common layer-by-layer deposition of regular, 3-axis 3D printing simplifies both the fabrication process and the 3D printer’s mechanical design. However, the resulting 3D printed objects have some unfavourable characteristics including visible layers, uneven structural strength and support material. To overcome these, researchers have employed robotic arms and multi-axis CNCs to deposit materials in conformal layers. Conformal deposition improves the quality of the 3D printed parts through support-less printing and curved layer deposition. However, such multi-axis 3D printing is inaccessible to many individuals due to high costs and technical complexities. Furthermore, the limited GUI support for conformal slicers creates an additional barrier for users. To open multi-axis 3D printing up to more makers and researchers, we present a cheap and accessible way to upgrade a regular 3D printer to 5 axes. We have also developed a GUI-based conformal slicer, integrated within a popular CAD package. Together, these deliver an accessible workflow for designing, simulating and creating conformally-printed 3D models.
AU - Hong,F
AU - Hodges,S
AU - Myant,C
AU - Boyle,DE
DO - 10.1145/3491101.3519782
PB - ACM
PY - 2022///
TI - Open5x: accessible 5-axis 3D printing and conformal slicing
UR - http://dx.doi.org/10.1145/3491101.3519782
UR - http://hdl.handle.net/10044/1/110249
ER -