Conduction measurements of 3D printed conductive composites

SLS 3D tulostettujen komposiittien sähkönjohto-ominaisuuksia ja reagointia paineeseen tutkittiin. Komposiitit tehtiin polystyreenistä tai nailonista, joihin sekoitettiin grafiitti-, super-P-, tai hiilinanoputkijauhetta. Paras johtavuus (4.3 S/m) saavutettiin polystyreenillä (60 %) ja grafiitilla (40...

Täydet tiedot

Bibliografiset tiedot
Päätekijä: Jokivartio, Joonas
Muut tekijät: Matemaattis-luonnontieteellinen tiedekunta, Faculty of Sciences, Fysiikan laitos, Department of Physics, Jyväskylän yliopisto, University of Jyväskylä
Aineistotyyppi: Pro gradu
Kieli:eng
Julkaistu: 2021
Aiheet:
Linkit: https://jyx.jyu.fi/handle/123456789/77237
_version_ 1826225693988487168
author Jokivartio, Joonas
author2 Matemaattis-luonnontieteellinen tiedekunta Faculty of Sciences Fysiikan laitos Department of Physics Jyväskylän yliopisto University of Jyväskylä
author_facet Jokivartio, Joonas Matemaattis-luonnontieteellinen tiedekunta Faculty of Sciences Fysiikan laitos Department of Physics Jyväskylän yliopisto University of Jyväskylä Jokivartio, Joonas Matemaattis-luonnontieteellinen tiedekunta Faculty of Sciences Fysiikan laitos Department of Physics Jyväskylän yliopisto University of Jyväskylä
author_sort Jokivartio, Joonas
datasource_str_mv jyx
description SLS 3D tulostettujen komposiittien sähkönjohto-ominaisuuksia ja reagointia paineeseen tutkittiin. Komposiitit tehtiin polystyreenistä tai nailonista, joihin sekoitettiin grafiitti-, super-P-, tai hiilinanoputkijauhetta. Paras johtavuus (4.3 S/m) saavutettiin polystyreenillä (60 %) ja grafiitilla (40 %). 3D tulosteet muuttuivat hauraiksi hyvin nopeasti, kun niihin lisättiin super-P tai hiilinanoputkijauhetta. Sähkönjohtavuuden reagointia paineeseen havaittiin ja vaikuttaa siltä, että materiaalia voisi käyttää painesensorina. Onnistuneet mittaukset saatiin tehtyä, kun materiaali oli perkolaatiokynnyksen yläpuolella. Perkolaationkynnyksen alapuolella tapahtuvaa käyttäytymistä ei saatu näkyviin, kun lämpötilaa muutettiin huoneenlämmön ja nestetypen lämpötilan välillä, mutta kun grafiittia oli 10 % komposiitin painosta niin se muodosti jatkuvia johtavia polkuja partikkelista toiseen, joita pitkin elektronit pääsivät johtumaan. Materiaalia olisi mahdollista käyttää virtausakkujen elektrodeina, mutta se ei vielä kykene kilpailemaan kaupallisten vaihtoehtojen kanssa. The electrical properties and their pressure sensitivity of SLS 3D printed composites were studied. These composites were composed of polystyrene or nylon mixed with graphite, super-P, or carbon nanotube powder. The best conductivity of 4.3 S/m was achieved with polystyrene (60 %) and graphite (40 %). The 3D prints became brittle very quickly when super-P or carbon nanotubes were used. Pressure sensitivity was observed, and it seems that the sensitivity is adequate for the material to be used as a pressure sensor. Successful measurements were done for materials above the percolation limit and at the temperature of liquid nitrogen and room temperature. The composite with a graphite concentration of 10 %, had continuous conducting pathways from particle to particle. Tunneling and hopping were not observed. The material could be used as a flow battery electrode, but it cannot yet compete with commercial options.
first_indexed 2021-08-02T20:01:30Z
format Pro gradu
fullrecord [{"key": "dc.contributor.advisor", "value": "Ahlskog, Markus", "language": "", "element": "contributor", "qualifier": "advisor", "schema": "dc"}, {"key": "dc.contributor.advisor", "value": "Haukka, Matti", "language": "", "element": "contributor", "qualifier": "advisor", "schema": "dc"}, {"key": "dc.contributor.author", "value": "Jokivartio, Joonas", "language": "", "element": "contributor", "qualifier": "author", "schema": "dc"}, {"key": "dc.date.accessioned", "value": "2021-08-02T06:17:47Z", "language": null, "element": "date", "qualifier": "accessioned", "schema": "dc"}, {"key": "dc.date.available", "value": "2021-08-02T06:17:47Z", "language": null, "element": "date", "qualifier": "available", "schema": "dc"}, {"key": "dc.date.issued", "value": "2021", "language": "", "element": "date", "qualifier": "issued", "schema": "dc"}, {"key": "dc.identifier.uri", "value": "https://jyx.jyu.fi/handle/123456789/77237", "language": null, "element": "identifier", "qualifier": "uri", "schema": "dc"}, {"key": "dc.description.abstract", "value": "SLS 3D tulostettujen komposiittien s\u00e4hk\u00f6njohto-ominaisuuksia ja reagointia paineeseen tutkittiin. Komposiitit tehtiin polystyreenist\u00e4 tai nailonista, joihin sekoitettiin grafiitti-, super-P-, tai hiilinanoputkijauhetta. Paras johtavuus (4.3 S/m) saavutettiin polystyreenill\u00e4 (60 %) ja grafiitilla (40 %). 3D tulosteet muuttuivat hauraiksi hyvin nopeasti, kun niihin lis\u00e4ttiin super-P tai hiilinanoputkijauhetta. S\u00e4hk\u00f6njohtavuuden reagointia paineeseen havaittiin ja vaikuttaa silt\u00e4, ett\u00e4 materiaalia voisi k\u00e4ytt\u00e4\u00e4 painesensorina. Onnistuneet mittaukset saatiin tehty\u00e4, kun materiaali oli perkolaatiokynnyksen yl\u00e4puolella. Perkolaationkynnyksen alapuolella tapahtuvaa k\u00e4ytt\u00e4ytymist\u00e4 ei saatu n\u00e4kyviin, kun l\u00e4mp\u00f6tilaa muutettiin huoneenl\u00e4mm\u00f6n ja nestetypen l\u00e4mp\u00f6tilan v\u00e4lill\u00e4, mutta kun grafiittia oli 10 % komposiitin painosta niin se muodosti jatkuvia johtavia polkuja partikkelista toiseen, joita pitkin elektronit p\u00e4\u00e4siv\u00e4t johtumaan. Materiaalia olisi mahdollista k\u00e4ytt\u00e4\u00e4 virtausakkujen elektrodeina, mutta se ei viel\u00e4 kykene kilpailemaan kaupallisten vaihtoehtojen kanssa.", "language": "fi", "element": "description", "qualifier": "abstract", "schema": "dc"}, {"key": "dc.description.abstract", "value": "The electrical properties and their pressure sensitivity of SLS 3D printed composites were studied. These composites were composed of polystyrene or nylon mixed with graphite, super-P, or carbon nanotube powder. The best conductivity of 4.3 S/m was achieved with polystyrene (60 %) and graphite (40 %). The 3D prints became brittle very quickly when super-P or carbon nanotubes were used. Pressure sensitivity was observed, and it seems that the sensitivity is adequate for the material to be used as a pressure sensor. Successful measurements were done for materials above the percolation limit and at the temperature of liquid nitrogen and room temperature. The composite with a graphite concentration of 10 %, had continuous conducting pathways from particle to particle. Tunneling and hopping were not observed. The material could be used as a flow battery electrode, but it cannot yet compete with commercial options.", "language": "en", "element": "description", "qualifier": "abstract", "schema": "dc"}, {"key": "dc.description.provenance", "value": "Submitted by Paivi Vuorio (paelvuor@jyu.fi) on 2021-08-02T06:17:47Z\nNo. of bitstreams: 0", "language": "en", "element": "description", "qualifier": "provenance", "schema": "dc"}, {"key": "dc.description.provenance", "value": "Made available in DSpace on 2021-08-02T06:17:47Z (GMT). No. of bitstreams: 0\n Previous issue date: 2021", "language": "en", "element": "description", "qualifier": "provenance", "schema": "dc"}, {"key": "dc.format.extent", "value": "74", "language": "", "element": "format", "qualifier": "extent", "schema": "dc"}, {"key": "dc.format.mimetype", "value": "application/pdf", "language": null, "element": "format", "qualifier": "mimetype", "schema": "dc"}, {"key": "dc.language.iso", "value": "eng", "language": null, "element": "language", "qualifier": "iso", "schema": "dc"}, {"key": "dc.rights", "value": "In Copyright", "language": "en", "element": "rights", "qualifier": null, "schema": "dc"}, {"key": "dc.subject.other", "value": "super-P", "language": "", "element": "subject", "qualifier": "other", "schema": "dc"}, {"key": "dc.subject.other", "value": "carbon nanotubes", "language": "", "element": "subject", "qualifier": "other", "schema": "dc"}, {"key": "dc.subject.other", "value": "selective laser sintering", "language": "", "element": "subject", "qualifier": "other", "schema": "dc"}, {"key": "dc.title", "value": "Conduction measurements of 3D printed conductive composites", "language": "", "element": "title", "qualifier": null, "schema": "dc"}, {"key": "dc.type", "value": "master thesis", "language": null, "element": "type", "qualifier": null, "schema": "dc"}, {"key": "dc.identifier.urn", "value": "URN:NBN:fi:jyu-202108024405", "language": "", "element": "identifier", "qualifier": "urn", "schema": "dc"}, {"key": "dc.type.ontasot", "value": "Pro gradu -tutkielma", "language": "fi", "element": "type", "qualifier": "ontasot", "schema": "dc"}, {"key": "dc.type.ontasot", "value": "Master\u2019s thesis", "language": "en", "element": "type", "qualifier": "ontasot", "schema": "dc"}, {"key": "dc.contributor.faculty", "value": "Matemaattis-luonnontieteellinen tiedekunta", "language": "fi", "element": "contributor", "qualifier": "faculty", "schema": "dc"}, {"key": "dc.contributor.faculty", "value": "Faculty of Sciences", "language": "en", "element": "contributor", "qualifier": "faculty", "schema": "dc"}, {"key": "dc.contributor.department", "value": "Fysiikan laitos", "language": "fi", "element": "contributor", "qualifier": "department", "schema": "dc"}, {"key": "dc.contributor.department", "value": "Department of Physics", "language": "en", "element": "contributor", "qualifier": "department", "schema": "dc"}, {"key": "dc.contributor.organization", "value": "Jyv\u00e4skyl\u00e4n yliopisto", "language": "fi", "element": "contributor", "qualifier": "organization", "schema": "dc"}, {"key": "dc.contributor.organization", "value": "University of Jyv\u00e4skyl\u00e4", "language": "en", "element": "contributor", "qualifier": "organization", "schema": "dc"}, {"key": "dc.subject.discipline", "value": "Fysiikka", "language": "fi", "element": "subject", "qualifier": "discipline", "schema": "dc"}, {"key": "dc.subject.discipline", "value": "Physics", "language": "en", "element": "subject", "qualifier": "discipline", "schema": "dc"}, {"key": "yvv.contractresearch.funding", "value": "0", "language": "", "element": "contractresearch", "qualifier": "funding", "schema": "yvv"}, {"key": "dc.type.coar", "value": "http://purl.org/coar/resource_type/c_bdcc", "language": null, "element": "type", "qualifier": "coar", "schema": "dc"}, {"key": "dc.rights.accesslevel", "value": "restrictedAccess", "language": null, "element": "rights", "qualifier": "accesslevel", "schema": "dc"}, {"key": "dc.type.publication", "value": "masterThesis", "language": null, "element": "type", "qualifier": "publication", "schema": "dc"}, {"key": "dc.subject.oppiainekoodi", "value": "4021", "language": "", "element": "subject", "qualifier": "oppiainekoodi", "schema": "dc"}, {"key": "dc.subject.yso", "value": "3D-tulostus", "language": null, "element": "subject", "qualifier": "yso", "schema": "dc"}, {"key": "dc.subject.yso", "value": "grafiitti", "language": null, "element": "subject", "qualifier": "yso", "schema": "dc"}, {"key": "dc.subject.yso", "value": "s\u00e4hk\u00f6njohtavuus", "language": null, "element": "subject", "qualifier": "yso", "schema": "dc"}, {"key": "dc.subject.yso", "value": "nanoputket", "language": null, "element": "subject", "qualifier": "yso", "schema": "dc"}, {"key": "dc.subject.yso", "value": "s\u00e4hk\u00f6iset ominaisuudet", "language": null, "element": "subject", "qualifier": "yso", "schema": "dc"}, {"key": "dc.subject.yso", "value": "polystyreeni", "language": null, "element": "subject", "qualifier": "yso", "schema": "dc"}, {"key": "dc.subject.yso", "value": "komposiitit", "language": null, "element": "subject", "qualifier": "yso", "schema": "dc"}, {"key": "dc.subject.yso", "value": "jauheet", "language": null, "element": "subject", "qualifier": "yso", "schema": "dc"}, {"key": "dc.subject.yso", "value": "nanorakenteet", "language": null, "element": "subject", "qualifier": "yso", "schema": "dc"}, {"key": "dc.subject.yso", "value": "nailon", "language": null, "element": "subject", "qualifier": "yso", "schema": "dc"}, {"key": "dc.subject.yso", "value": "3D printing", "language": null, "element": "subject", "qualifier": "yso", "schema": "dc"}, {"key": "dc.subject.yso", "value": "graphite", "language": null, "element": "subject", "qualifier": "yso", "schema": "dc"}, {"key": "dc.subject.yso", "value": "electric conductivity", "language": null, "element": "subject", "qualifier": "yso", "schema": "dc"}, {"key": "dc.subject.yso", "value": "nanotubes", "language": null, "element": "subject", "qualifier": "yso", "schema": "dc"}, {"key": "dc.subject.yso", "value": "electric properties", "language": null, "element": "subject", "qualifier": "yso", "schema": "dc"}, {"key": "dc.subject.yso", "value": "polystyrene", "language": null, "element": "subject", "qualifier": "yso", "schema": "dc"}, {"key": "dc.subject.yso", "value": "composites", "language": null, "element": "subject", "qualifier": "yso", "schema": "dc"}, {"key": "dc.subject.yso", "value": "powders", "language": null, "element": "subject", "qualifier": "yso", "schema": "dc"}, {"key": "dc.subject.yso", "value": "nanostructures", "language": null, "element": "subject", "qualifier": "yso", "schema": "dc"}, {"key": "dc.subject.yso", "value": "nylon", "language": null, "element": "subject", "qualifier": "yso", "schema": "dc"}, {"key": "dc.format.content", "value": "fulltext", "language": null, "element": "format", "qualifier": "content", "schema": "dc"}, {"key": "dc.rights.url", "value": "https://rightsstatements.org/page/InC/1.0/", "language": null, "element": "rights", "qualifier": "url", "schema": "dc"}, {"key": "dc.rights.accessrights", "value": "The author has not given permission to make the work publicly available electronically. Therefore the material can be read only at the archival workstation at Jyv\u00e4skyl\u00e4 University Library (https://kirjasto.jyu.fi/collections/archival-workstation).", "language": "en", "element": "rights", "qualifier": "accessrights", "schema": "dc"}, {"key": "dc.rights.accessrights", "value": "Tekij\u00e4 ei ole antanut lupaa avoimeen julkaisuun, joten aineisto on luettavissa vain Jyv\u00e4skyl\u00e4n yliopiston kirjaston arkistoty\u00f6semalta. Ks. https://kirjasto.jyu.fi/kokoelmat/arkistotyoasema..", "language": "fi", "element": "rights", "qualifier": "accessrights", "schema": "dc"}, {"key": "dc.type.okm", "value": "G2", "language": null, "element": "type", "qualifier": "okm", "schema": "dc"}]
id jyx.123456789_77237
language eng
last_indexed 2025-02-18T10:54:12Z
main_date 2021-01-01T00:00:00Z
main_date_str 2021
publishDate 2021
record_format qdc
source_str_mv jyx
spellingShingle Jokivartio, Joonas Conduction measurements of 3D printed conductive composites super-P carbon nanotubes selective laser sintering Fysiikka Physics 4021 3D-tulostus grafiitti sähkönjohtavuus nanoputket sähköiset ominaisuudet polystyreeni komposiitit jauheet nanorakenteet nailon 3D printing graphite electric conductivity nanotubes electric properties polystyrene composites powders nanostructures nylon
title Conduction measurements of 3D printed conductive composites
title_full Conduction measurements of 3D printed conductive composites
title_fullStr Conduction measurements of 3D printed conductive composites Conduction measurements of 3D printed conductive composites
title_full_unstemmed Conduction measurements of 3D printed conductive composites Conduction measurements of 3D printed conductive composites
title_short Conduction measurements of 3D printed conductive composites
title_sort conduction measurements of 3d printed conductive composites
title_txtP Conduction measurements of 3D printed conductive composites
topic super-P carbon nanotubes selective laser sintering Fysiikka Physics 4021 3D-tulostus grafiitti sähkönjohtavuus nanoputket sähköiset ominaisuudet polystyreeni komposiitit jauheet nanorakenteet nailon 3D printing graphite electric conductivity nanotubes electric properties polystyrene composites powders nanostructures nylon
topic_facet 3D printing 3D-tulostus 4021 Fysiikka Physics carbon nanotubes composites electric conductivity electric properties grafiitti graphite jauheet komposiitit nailon nanoputket nanorakenteet nanostructures nanotubes nylon polystyreeni polystyrene powders selective laser sintering super-P sähköiset ominaisuudet sähkönjohtavuus
url https://jyx.jyu.fi/handle/123456789/77237 http://www.urn.fi/URN:NBN:fi:jyu-202108024405
work_keys_str_mv AT jokivartiojoonas conductionmeasurementsof3dprintedconductivecomposites