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Materiale Plastice
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https://doi.org/10.37358/Mat.Plast.1964

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Materiale Plastice (Mater. Plast.), Year 2018, Volume 55, Issue 4, 517-520

https://doi.org/10.37358/MP.18.4.5065

Aurelian Zapciu, Catalin Gheorghe Amza, Corneliu Rontescu, Gabriel Tasca

3D-Printed, Non-assembly, Pneumatically Actuated Mechanisms from Thermoplastic Materials


Abstract:
Various applications in industry and medicine require the transmission of movement using systems that do not influence magnetic or electromagnetic fields. These components include systems which transmit linear or rotational motion, change position (switches), attach or detach to objects (latches), grip objects, etc. This paper looks into the possibility of producing such mechanisms using FDM 3D-printed parts from thermoplastic materials with embedded moving parts, which can be pneumatically actuated. In order to make the parts suitable for use in pressurized air systems, different sets of printing parameters have been investigated. PLA annealing is used in the attempt to minimize play and increase air-tightness of 3D-printed parts.


Keywords:
FDM 3D printing; pneumatic mechanism; PLA annealing

Issue: 2018 Volume 55, Issue 4
Pages: 517-520
Publication date: 2018/12/30
https://doi.org/10.37358/MP.18.4.5065
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Creative Commons License
This article is published under the Creative Commons Attribution 4.0 International License
Citation Styles
Cite this article as:
ZAPCIU, A., AMZA, C.G., RONTESCU, C., TASCA, G., 3D-Printed, Non-assembly, Pneumatically Actuated Mechanisms from Thermoplastic Materials, Mater. Plast., 55(4), 2018, 517-520. https://doi.org/10.37358/MP.18.4.5065

Vancouver
Zapciu A, Amza CG, Rontescu C, Tasca G. 3D-Printed, Non-assembly, Pneumatically Actuated Mechanisms from Thermoplastic Materials. Mater. Plast.[internet]. 2018 Dec;55(4):517-520. Available from: https://doi.org/10.37358/MP.18.4.5065


APA 6th edition
Zapciu, A., Amza, C.G., Rontescu, C. & Tasca, G. (2018). 3D-Printed, Non-assembly, Pneumatically Actuated Mechanisms from Thermoplastic Materials. Materiale Plastice, 55(4), 517-520. https://doi.org/10.37358/MP.18.4.5065


Harvard
Zapciu, A., Amza, C.G., Rontescu, C., Tasca, G. (2018). '3D-Printed, Non-assembly, Pneumatically Actuated Mechanisms from Thermoplastic Materials', Materiale Plastice, 55(4), pp. 517-520. https://doi.org/10.37358/MP.18.4.5065


IEEE
A. Zapciu, C.G. Amza, C. Rontescu, G. Tasca, "3D-Printed, Non-assembly, Pneumatically Actuated Mechanisms from Thermoplastic Materials". Materiale Plastice, vol. 55, no. 4, pp. 517-520, 2018. [online]. https://doi.org/10.37358/MP.18.4.5065


Text
Aurelian Zapciu, Catalin Gheorghe Amza, Corneliu Rontescu, Gabriel Tasca,
3D-Printed, Non-assembly, Pneumatically Actuated Mechanisms from Thermoplastic Materials,
Materiale Plastice,
Volume 55, Issue 4,
2018,
Pages 517-520,
ISSN 2668-8220,
https://doi.org/10.37358/MP.18.4.5065.
(https://revmaterialeplastice.ro/Articles.asp?ID=5065)
Keywords: FDM 3D printing; pneumatic mechanism; PLA annealing


RIS
TY - JOUR
T1 - 3D-Printed, Non-assembly, Pneumatically Actuated Mechanisms from Thermoplastic Materials
A1 - Zapciu, Aurelian
A2 - Amza, Catalin Gheorghe
A3 - Rontescu, Corneliu
A4 - Tasca, Gabriel
JF - Materiale Plastice
JO - Mater. Plast.
PB - Materiale Plastice SRL
SN - 2668-8220
Y1 - 2018
VL - 55
IS - 4
SP - 517
EP - 520
UR - https://doi.org/10.37358/MP.18.4.5065
KW - FDM 3D printing
KW - pneumatic mechanism
KW - PLA annealing
ER -


BibTex
@article{MatPlast2018P517,
author = {Zapciu Aurelian and Amza Catalin Gheorghe and Rontescu Corneliu and Tasca Gabriel},
title = {3D-Printed, Non-assembly, Pneumatically Actuated Mechanisms from Thermoplastic Materials},
journal = {Materiale Plastice},
volume = {55},
number = {4},
pages = {517-520},
year = {2018},
issn = {2668-8220},
doi = {https://doi.org/10.37358/MP.18.4.5065},
url = {https://revmaterialeplastice.ro/Articles.asp?ID=5065}
}


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