Structure and thermoelectric properties of inconel 625/Pt microjoint

A method of using the electric charge in a capacitor was applied for the manufacture of thermocouple micro-joints. The motivation for the study was the need to produce a stable welded connection without affecting the geometry of the substrate, which was a thin sheet of Inconel 625 alloy (UNS designa...

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Main Authors: G. Boczkal, K. Dadun, P. Palka, A. Hotlos, M. Janoska
Format: Article
Language:English
Published: Polish Academy of Sciences 2019-03-01
Series:Archives of Metallurgy and Materials
Subjects:
Online Access:https://journals.pan.pl/Content/110151/PDF/AMM-2019-1-29-Boczkal.pdf
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author G. Boczkal
K. Dadun
P. Palka
A. Hotlos
M. Janoska
author_facet G. Boczkal
K. Dadun
P. Palka
A. Hotlos
M. Janoska
author_sort G. Boczkal
collection DOAJ
description A method of using the electric charge in a capacitor was applied for the manufacture of thermocouple micro-joints. The motivation for the study was the need to produce a stable welded connection without affecting the geometry of the substrate, which was a thin sheet of Inconel 625 alloy (UNS designation N06625). Within the framework of the research work, a suitable workstation for micro-joints elaboration was built and welding experiments were performed using different electric charges. Studies carried out within the framework of the present work have shown that joints based on Inconel 625 alloy and platinum have the best application properties in the range of small-scale temperature measurements. They can be used, e.g., for monitoring the temperature distribution on the inner surfaces of electric motor casings. An undeniable advantage is in this case the high thermal resistance of both materials used to produce the joint, i.e. the Inconel 625 alloy and platinum. This allows them to be used at high temperatures under atmospheric conditions.
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spelling doaj.art-011424d62f73442cb03a9a4181364c2c2022-12-22T01:40:07ZengPolish Academy of SciencesArchives of Metallurgy and Materials2300-19092019-03-01vol. 64No 1197200https://doi.org/10.24425/amm.2019.126238Structure and thermoelectric properties of inconel 625/Pt microjointG. BoczkalK. DadunP. PalkaA. HotlosM. JanoskaA method of using the electric charge in a capacitor was applied for the manufacture of thermocouple micro-joints. The motivation for the study was the need to produce a stable welded connection without affecting the geometry of the substrate, which was a thin sheet of Inconel 625 alloy (UNS designation N06625). Within the framework of the research work, a suitable workstation for micro-joints elaboration was built and welding experiments were performed using different electric charges. Studies carried out within the framework of the present work have shown that joints based on Inconel 625 alloy and platinum have the best application properties in the range of small-scale temperature measurements. They can be used, e.g., for monitoring the temperature distribution on the inner surfaces of electric motor casings. An undeniable advantage is in this case the high thermal resistance of both materials used to produce the joint, i.e. the Inconel 625 alloy and platinum. This allows them to be used at high temperatures under atmospheric conditions.https://journals.pan.pl/Content/110151/PDF/AMM-2019-1-29-Boczkal.pdfmicrojointthermocouplemicrostructure
spellingShingle G. Boczkal
K. Dadun
P. Palka
A. Hotlos
M. Janoska
Structure and thermoelectric properties of inconel 625/Pt microjoint
Archives of Metallurgy and Materials
microjoint
thermocouple
microstructure
title Structure and thermoelectric properties of inconel 625/Pt microjoint
title_full Structure and thermoelectric properties of inconel 625/Pt microjoint
title_fullStr Structure and thermoelectric properties of inconel 625/Pt microjoint
title_full_unstemmed Structure and thermoelectric properties of inconel 625/Pt microjoint
title_short Structure and thermoelectric properties of inconel 625/Pt microjoint
title_sort structure and thermoelectric properties of inconel 625 pt microjoint
topic microjoint
thermocouple
microstructure
url https://journals.pan.pl/Content/110151/PDF/AMM-2019-1-29-Boczkal.pdf
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