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Composite Polymer for Hybrid Activity Protective Panel in Microwave Generation of Composite Polytetrafluoroethylene -Rapana Thomasiana

During the microwave sintering of a polymer-ceramic composite plasma discharge is experienced. The discharge could occur failure of the power source. The solution proposed by the paper is original, no similar solutions being presented by the literature. It consists of using a polymer-ceramic composi...

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Autores principales: Savu, Ionel Dănuț, Tarniță, Daniela, Savu, Sorin Vasile, Benga, Gabriel Constantin, Cursaru, Laura-Madalina, Dragut, Dumitru Valentin, Piticescu, Roxana Mioara, Tarniță, Danut Nicolae
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2021
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8348400/
https://www.ncbi.nlm.nih.gov/pubmed/34372033
http://dx.doi.org/10.3390/polym13152432
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author Savu, Ionel Dănuț
Tarniță, Daniela
Savu, Sorin Vasile
Benga, Gabriel Constantin
Cursaru, Laura-Madalina
Dragut, Dumitru Valentin
Piticescu, Roxana Mioara
Tarniță, Danut Nicolae
author_facet Savu, Ionel Dănuț
Tarniță, Daniela
Savu, Sorin Vasile
Benga, Gabriel Constantin
Cursaru, Laura-Madalina
Dragut, Dumitru Valentin
Piticescu, Roxana Mioara
Tarniță, Danut Nicolae
author_sort Savu, Ionel Dănuț
collection PubMed
description During the microwave sintering of a polymer-ceramic composite plasma discharge is experienced. The discharge could occur failure of the power source. The solution proposed by the paper is original, no similar solutions being presented by the literature. It consists of using a polymer-ceramic composite protective panel, to stop the plasma discharge to the entrance of the guiding tunnel. Six composites resulted by combining three polymers, Polytetrafluoroethylene (PTFE), STRATITEX composite and Polyvinylchloride (PVC) with two natural ceramics containing calcium carbonate: Rapana Thomasiana (RT) sea-shells and beach sand were used to build the protective panel.Theoretical balance of the power to the panel was analysed and the thermal field was determined. It was applied heating using 0.6-1.2-1.8-2.4-3.0 kW microwave beam power. The panels were subjected to heating with and without material to be sintered. It was analyzed: RT chemical (CaCO(3) as Calcite and Aragonite), burned area (range: 200–4000 mm(2)) and penetration (range: 1.6–5.5 mm), and thermal analysis of the burned areas comparing to the original data. PTFE-RT composite proved the lowest penetration to 0.6 and 1.2 kW. Other 1.2 kW all composites experienced vital failures. Transformation of the polymer matrix of composite consisted of slightly decreasing of the phase shifting temperature and of slightly increasing of the melting start and liquidus temperature.
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spelling pubmed-83484002021-08-08 Composite Polymer for Hybrid Activity Protective Panel in Microwave Generation of Composite Polytetrafluoroethylene -Rapana Thomasiana Savu, Ionel Dănuț Tarniță, Daniela Savu, Sorin Vasile Benga, Gabriel Constantin Cursaru, Laura-Madalina Dragut, Dumitru Valentin Piticescu, Roxana Mioara Tarniță, Danut Nicolae Polymers (Basel) Article During the microwave sintering of a polymer-ceramic composite plasma discharge is experienced. The discharge could occur failure of the power source. The solution proposed by the paper is original, no similar solutions being presented by the literature. It consists of using a polymer-ceramic composite protective panel, to stop the plasma discharge to the entrance of the guiding tunnel. Six composites resulted by combining three polymers, Polytetrafluoroethylene (PTFE), STRATITEX composite and Polyvinylchloride (PVC) with two natural ceramics containing calcium carbonate: Rapana Thomasiana (RT) sea-shells and beach sand were used to build the protective panel.Theoretical balance of the power to the panel was analysed and the thermal field was determined. It was applied heating using 0.6-1.2-1.8-2.4-3.0 kW microwave beam power. The panels were subjected to heating with and without material to be sintered. It was analyzed: RT chemical (CaCO(3) as Calcite and Aragonite), burned area (range: 200–4000 mm(2)) and penetration (range: 1.6–5.5 mm), and thermal analysis of the burned areas comparing to the original data. PTFE-RT composite proved the lowest penetration to 0.6 and 1.2 kW. Other 1.2 kW all composites experienced vital failures. Transformation of the polymer matrix of composite consisted of slightly decreasing of the phase shifting temperature and of slightly increasing of the melting start and liquidus temperature. MDPI 2021-07-23 /pmc/articles/PMC8348400/ /pubmed/34372033 http://dx.doi.org/10.3390/polym13152432 Text en © 2021 by the authors. https://creativecommons.org/licenses/by/4.0/Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (https://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Savu, Ionel Dănuț
Tarniță, Daniela
Savu, Sorin Vasile
Benga, Gabriel Constantin
Cursaru, Laura-Madalina
Dragut, Dumitru Valentin
Piticescu, Roxana Mioara
Tarniță, Danut Nicolae
Composite Polymer for Hybrid Activity Protective Panel in Microwave Generation of Composite Polytetrafluoroethylene -Rapana Thomasiana
title Composite Polymer for Hybrid Activity Protective Panel in Microwave Generation of Composite Polytetrafluoroethylene -Rapana Thomasiana
title_full Composite Polymer for Hybrid Activity Protective Panel in Microwave Generation of Composite Polytetrafluoroethylene -Rapana Thomasiana
title_fullStr Composite Polymer for Hybrid Activity Protective Panel in Microwave Generation of Composite Polytetrafluoroethylene -Rapana Thomasiana
title_full_unstemmed Composite Polymer for Hybrid Activity Protective Panel in Microwave Generation of Composite Polytetrafluoroethylene -Rapana Thomasiana
title_short Composite Polymer for Hybrid Activity Protective Panel in Microwave Generation of Composite Polytetrafluoroethylene -Rapana Thomasiana
title_sort composite polymer for hybrid activity protective panel in microwave generation of composite polytetrafluoroethylene -rapana thomasiana
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC8348400/
https://www.ncbi.nlm.nih.gov/pubmed/34372033
http://dx.doi.org/10.3390/polym13152432
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