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The effect of a face wall on a cellular structure during bending

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dc.title The effect of a face wall on a cellular structure during bending en
dc.contributor.author Monková, Katarína
dc.contributor.author Monka, Peter Pavol
dc.contributor.author Koroľ, Martin
dc.contributor.author Torok, Jozef
dc.contributor.author Beňo, Pavel
dc.relation.ispartof EAI/Springer Innovations in Communication and Computing
dc.identifier.issn 2522-8595 Scopus Sources, Sherpa/RoMEO, JCR
dc.identifier.isbn 978-303156532-8
dc.date.issued 2024
dc.citation.spage 155
dc.citation.epage 162
dc.event.title 10th EAI International Conference on Mobility, IoT and Smart Cities, Mobility IoT 2023
dc.event.location Bratislava
utb.event.state-en Slovakia
utb.event.state-cs Slovensko
dc.event.sdate 2023-10-24
dc.event.edate 2023-10-26
dc.type conferenceObject
dc.language.iso en
dc.publisher Springer Science and Business Media Deutschland GmbH
dc.identifier.doi 10.1007/978-3-031-56533-5_12
dc.relation.uri https://link.springer.com/chapter/10.1007/978-3-031-56533-5_12
dc.subject bending en
dc.subject cellular structure en
dc.subject face wall en
dc.subject fused filament fabrication en
dc.description.abstract Industry 4.0 enabled great development in the field of technology, but it also brought with it new challenges not only in the field of digitization but also in the field of developing new materials. Scientists have realized that there are a large number of materials in nature that have good properties and are light at the same time. The chapter deals with the investigation of the influence of the front wall on the cell structure of the ‘Schwarz P’ type during bending. Porous specimens were designed in a 30% volume ratio with 10 × 10 × 10 mm unit cells distributed regularly in all three orthogonal axes. The total volume of the structure was 20 × 30 × 250 mm. They were made of plastic material PLA (polylactic acid) by FFF (fused filament fabrication) technology. Samples were made with one or two front walls in a sandwich manner, or without a wall. The three-point bending experimental test made it possible to record the dependence of the force load on the displacement. The measured data were processed and then the maximum bending stresses were calculated. The results clearly show the influence of the front wall, with the maximum stresses increasing with the number of walls, and this trend was best described by a second-order polynomial equation. © The Author(s). en
utb.faculty Faculty of Technology
dc.identifier.uri http://hdl.handle.net/10563/1012410
utb.identifier.scopus 2-s2.0-86000238051
utb.source d-scopus
dc.date.accessioned 2025-05-09T08:50:18Z
dc.date.available 2025-05-09T08:50:18Z
dc.description.sponsorship Ministerstvo školstva, vedy, výskumu a športu Slovenskej republiky, (APVV-19-0550); Ministerstvo školstva, vedy, výskumu a športu Slovenskej republiky; Kultúrna a Edukacná Grantová Agentúra MŠVVaŠ SR, KEGA, (005TUKE-4/2021); Kultúrna a Edukacná Grantová Agentúra MŠVVaŠ SR, KEGA; Erasmus+, (+2021-1-PL01-KA220-HED-000031182); Erasmus+
utb.contributor.internalauthor Monková, Katarína
utb.contributor.internalauthor Monka, Peter Pavol
utb.fulltext.sponsorship The chapter was prepared owing to the support of the Ministry of Education of the Slovak Republic through the grants APVV-19-0550, KEGA 005TUKE-4/2021 and ERASMUS+ 2021-1-PL01-KA220-HED-000031182.
utb.scopus.affiliation TU Kosice, Faculty of Manufacturing Technologies with a Seat in Presov, Presov, Slovakia; TBU in Zlin, Faculty of Technology, Zlin, Czech Republic; TU Kosice, Faculty of Manufacturing Technologies with a Seat in Presov, Presov, Slovakia; Faculty of Technology, Technical University in Zvolen, Zvolen, Slovakia
utb.fulltext.projects APVV-19-0550
utb.fulltext.projects KEGA 005TUKE-4/2021
utb.fulltext.projects ERASMUS+ 2021-1-PL01-KA220-HED-000031182
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