3D Printed Fused Deposition Modeling (FDM) Capillaries for Chemiresistive Gas Sensors

This paper discusses the possible use of 3D fused deposition modeling (FDM) to fabricate capillaries for low-cost chemiresistive gas sensors that are often used in various applications. The disadvantage of these sensors is low selectivity, but 3D printed FDM capillaries have the potential to increas...

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Published inSensors (Basel, Switzerland) Vol. 23; no. 15; p. 6817
Main Authors Adamek, Martin, Mlcek, Jiri, Skowronkova, Nela, Zvonkova, Magdalena, Jasso, Miroslav, Adamkova, Anna, Skacel, Josef, Buresova, Iva, Sebestikova, Romana, Cernekova, Martina, Buckova, Martina
Format Journal Article
LanguageEnglish
Published Switzerland MDPI AG 31.07.2023
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Abstract This paper discusses the possible use of 3D fused deposition modeling (FDM) to fabricate capillaries for low-cost chemiresistive gas sensors that are often used in various applications. The disadvantage of these sensors is low selectivity, but 3D printed FDM capillaries have the potential to increase their selectivity. Capillaries with 1, 2 and 3 tiers with a length of 1.5 m, 3.1 m and 4.7 m were designed and manufactured. Food and goods available in the general trade network were used as samples (alcohol, seafood, chicken thigh meat, acetone-free nail polish remover and gas from a gas lighter) were also tested. The "Vodka" sample was used as a standard for determining the effect of capillary parameters on the output signal of the MiCS6814 sensor. The results show the shift of individual parts of the signal in time depending on the parameters of the capillary and the carrier air flow. A three-tier capillary was chosen for the comparison of gas samples with each other. The graphs show the differences between individual samples, not only in the height of the output signal but also in its time characteristic. The tested 3D printed FDM capillaries thus made it possible to characterize the output response by also using an inexpensive chemiresistive gas sensor in the time domain.
AbstractList This paper discusses the possible use of 3D fused deposition modeling (FDM) to fabricate capillaries for low-cost chemiresistive gas sensors that are often used in various applications. The disadvantage of these sensors is low selectivity, but 3D printed FDM capillaries have the potential to increase their selectivity. Capillaries with 1, 2 and 3 tiers with a length of 1.5 m, 3.1 m and 4.7 m were designed and manufactured. Food and goods available in the general trade network were used as samples (alcohol, seafood, chicken thigh meat, acetone-free nail polish remover and gas from a gas lighter) were also tested. The “Vodka” sample was used as a standard for determining the effect of capillary parameters on the output signal of the MiCS6814 sensor. The results show the shift of individual parts of the signal in time depending on the parameters of the capillary and the carrier air flow. A three-tier capillary was chosen for the comparison of gas samples with each other. The graphs show the differences between individual samples, not only in the height of the output signal but also in its time characteristic. The tested 3D printed FDM capillaries thus made it possible to characterize the output response by also using an inexpensive chemiresistive gas sensor in the time domain.
Audience Academic
Author Skacel, Josef
Buckova, Martina
Adamkova, Anna
Buresova, Iva
Jasso, Miroslav
Adamek, Martin
Sebestikova, Romana
Mlcek, Jiri
Skowronkova, Nela
Zvonkova, Magdalena
Cernekova, Martina
AuthorAffiliation 4 Department of Food Technology, Faculty of Technology, Tomas Bata University in Zlin, Vavreckova 5669, 760 01 Zlin, Czech Republic; buresova@utb.cz (I.B.); r_sebestikova@utb.cz (R.S.)
5 Department of Fat, Surfactant and Cosmetics Technology, Faculty of Technology, Tomas Bata University in Zlin, Vavreckova 5669, 760 01 Zlin, Czech Republic; cernekova@utb.cz
2 Department of Microelectronics, Faculty of Electrical Engineering and Communication, Brno University of Technology, Technicka 3058/10, 616 00 Brno, Czech Republic; josef.skacel@vutbr.cz
1 Department of Automation and Control Engineering, Faculty of Applied Informatics, Tomas Bata University in Zlin, Nad Stranemi 4511, 760 05 Zlin, Czech Republic; m2adamek@utb.cz
3 Department of Food Analysis and Chemistry, Faculty of Technology, Tomas Bata University in Zlin, Vavreckova 5669, 760 01 Zlin, Czech Republic; n_skowronkova@utb.cz (N.S.); m1_zvonkova@utb.cz (M.Z.); m_jasso@utb.cz (M.J.); buckova@utb.cz (M.B.)
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Keywords PLA
foods
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chemiresistive gas sensors
3D printing
FDM
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Snippet This paper discusses the possible use of 3D fused deposition modeling (FDM) to fabricate capillaries for low-cost chemiresistive gas sensors that are often...
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SubjectTerms 3-D printers
3-D technology
3D printing
Blood vessels
capillary
chemiresistive gas sensors
Chromatography
Costs
Design
Efficiency
Energy consumption
FDM
foods
Gases
PLA
Sensors
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Title 3D Printed Fused Deposition Modeling (FDM) Capillaries for Chemiresistive Gas Sensors
URI https://www.ncbi.nlm.nih.gov/pubmed/37571598
https://www.proquest.com/docview/2849106856
https://search.proquest.com/docview/2850313391
https://pubmed.ncbi.nlm.nih.gov/PMC10422458
https://doaj.org/article/4a1babbaab20479289e148a3d1a4554f
Volume 23
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