Cargando…

Effects of AlN and BCN Thin Film Multilayer Design on the Reaction Time of Ni/Ni-20Cr Thin Film Thermocouples on Thermally Sprayed Al(2)O(3)

Thin film thermocouples are widely used for local temperature determinations of surfaces. However, depending on the environment in which they are used, thin film thermocouples need to be covered by a wear or oxidation resistant top layer. With regard to the utilization in wide-slit nozzles for plast...

Descripción completa

Detalles Bibliográficos
Autores principales: Tillmann, Wolfgang, Kokalj, David, Stangier, Dominic, Schöppner, Volker, Malatyali, Hatice
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6695656/
https://www.ncbi.nlm.nih.gov/pubmed/31382654
http://dx.doi.org/10.3390/s19153414
_version_ 1783444086486728704
author Tillmann, Wolfgang
Kokalj, David
Stangier, Dominic
Schöppner, Volker
Malatyali, Hatice
author_facet Tillmann, Wolfgang
Kokalj, David
Stangier, Dominic
Schöppner, Volker
Malatyali, Hatice
author_sort Tillmann, Wolfgang
collection PubMed
description Thin film thermocouples are widely used for local temperature determinations of surfaces. However, depending on the environment in which they are used, thin film thermocouples need to be covered by a wear or oxidation resistant top layer. With regard to the utilization in wide-slit nozzles for plastic extrusion, Ni/Ni-20Cr thin film thermocouples were manufactured using direct-current (DC) magnetron sputtering combined with Aluminiumnitride (AlN) and Boron-Carbonitride (BCN) thin films. On the one hand, the deposition parameters of the nitride layers were varied to affect the chemical composition and morphology of the AlN and BCN thin films. On the other hand, the position of the nitride layers (below the thermocouple, above the thermocouple, around the thermocouple) was changed. Both factors were investigated concerning the influence on the Seebeck coefficient and the reaction behaviour of the thermocouples. Therefore, the impact of the nitride thin films on the morphology, physical structure, crystallite size, electrical resistance and hardness of the Ni and Ni-20Cr thin films is analysed. The investigations reveal that the Seebeck coefficient is not affected by the different architectures of the thermocouples. Nevertheless, the reaction time of the thermocouples can be significantly improved by adding a thermal conductive top coat over the thin films, whereas the top coat should have a coarse structure and low nitrogen content.
format Online
Article
Text
id pubmed-6695656
institution National Center for Biotechnology Information
language English
publishDate 2019
publisher MDPI
record_format MEDLINE/PubMed
spelling pubmed-66956562019-09-05 Effects of AlN and BCN Thin Film Multilayer Design on the Reaction Time of Ni/Ni-20Cr Thin Film Thermocouples on Thermally Sprayed Al(2)O(3) Tillmann, Wolfgang Kokalj, David Stangier, Dominic Schöppner, Volker Malatyali, Hatice Sensors (Basel) Article Thin film thermocouples are widely used for local temperature determinations of surfaces. However, depending on the environment in which they are used, thin film thermocouples need to be covered by a wear or oxidation resistant top layer. With regard to the utilization in wide-slit nozzles for plastic extrusion, Ni/Ni-20Cr thin film thermocouples were manufactured using direct-current (DC) magnetron sputtering combined with Aluminiumnitride (AlN) and Boron-Carbonitride (BCN) thin films. On the one hand, the deposition parameters of the nitride layers were varied to affect the chemical composition and morphology of the AlN and BCN thin films. On the other hand, the position of the nitride layers (below the thermocouple, above the thermocouple, around the thermocouple) was changed. Both factors were investigated concerning the influence on the Seebeck coefficient and the reaction behaviour of the thermocouples. Therefore, the impact of the nitride thin films on the morphology, physical structure, crystallite size, electrical resistance and hardness of the Ni and Ni-20Cr thin films is analysed. The investigations reveal that the Seebeck coefficient is not affected by the different architectures of the thermocouples. Nevertheless, the reaction time of the thermocouples can be significantly improved by adding a thermal conductive top coat over the thin films, whereas the top coat should have a coarse structure and low nitrogen content. MDPI 2019-08-03 /pmc/articles/PMC6695656/ /pubmed/31382654 http://dx.doi.org/10.3390/s19153414 Text en © 2019 by the authors. 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 (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Tillmann, Wolfgang
Kokalj, David
Stangier, Dominic
Schöppner, Volker
Malatyali, Hatice
Effects of AlN and BCN Thin Film Multilayer Design on the Reaction Time of Ni/Ni-20Cr Thin Film Thermocouples on Thermally Sprayed Al(2)O(3)
title Effects of AlN and BCN Thin Film Multilayer Design on the Reaction Time of Ni/Ni-20Cr Thin Film Thermocouples on Thermally Sprayed Al(2)O(3)
title_full Effects of AlN and BCN Thin Film Multilayer Design on the Reaction Time of Ni/Ni-20Cr Thin Film Thermocouples on Thermally Sprayed Al(2)O(3)
title_fullStr Effects of AlN and BCN Thin Film Multilayer Design on the Reaction Time of Ni/Ni-20Cr Thin Film Thermocouples on Thermally Sprayed Al(2)O(3)
title_full_unstemmed Effects of AlN and BCN Thin Film Multilayer Design on the Reaction Time of Ni/Ni-20Cr Thin Film Thermocouples on Thermally Sprayed Al(2)O(3)
title_short Effects of AlN and BCN Thin Film Multilayer Design on the Reaction Time of Ni/Ni-20Cr Thin Film Thermocouples on Thermally Sprayed Al(2)O(3)
title_sort effects of aln and bcn thin film multilayer design on the reaction time of ni/ni-20cr thin film thermocouples on thermally sprayed al(2)o(3)
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6695656/
https://www.ncbi.nlm.nih.gov/pubmed/31382654
http://dx.doi.org/10.3390/s19153414
work_keys_str_mv AT tillmannwolfgang effectsofalnandbcnthinfilmmultilayerdesignonthereactiontimeofnini20crthinfilmthermocouplesonthermallysprayedal2o3
AT kokaljdavid effectsofalnandbcnthinfilmmultilayerdesignonthereactiontimeofnini20crthinfilmthermocouplesonthermallysprayedal2o3
AT stangierdominic effectsofalnandbcnthinfilmmultilayerdesignonthereactiontimeofnini20crthinfilmthermocouplesonthermallysprayedal2o3
AT schoppnervolker effectsofalnandbcnthinfilmmultilayerdesignonthereactiontimeofnini20crthinfilmthermocouplesonthermallysprayedal2o3
AT malatyalihatice effectsofalnandbcnthinfilmmultilayerdesignonthereactiontimeofnini20crthinfilmthermocouplesonthermallysprayedal2o3