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In situ micro gas tungsten constricted arc welding of ultra-thin walled 2.275 mm outer diameter grade 2 commercially pure titanium tubing

Ultra-thin walled cooling tubes for heat exchangers and condenser units have applications in multiple high-value manufacturing industries. Grade 2 commercially pure titanium (CP-2 Ti) requires far less mass to achieve the same mass flow handling abilities as stainless steel tubing yet it is more cha...

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Detalles Bibliográficos
Autores principales: Cooper, L, Crouvizier, M, Edwards, S, French, R, Gannaway, F, Kemp-Russell, P, Marin-Reyes, H, Mercer, I, Rendell-Read, A, Viehhauser, G, Yeadon, W
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1748-0221/15/06/p06022
http://cds.cern.ch/record/2756393
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author Cooper, L
Crouvizier, M
Edwards, S
French, R
Gannaway, F
Kemp-Russell, P
Marin-Reyes, H
Mercer, I
Rendell-Read, A
Viehhauser, G
Yeadon, W
author_facet Cooper, L
Crouvizier, M
Edwards, S
French, R
Gannaway, F
Kemp-Russell, P
Marin-Reyes, H
Mercer, I
Rendell-Read, A
Viehhauser, G
Yeadon, W
author_sort Cooper, L
collection CERN
description Ultra-thin walled cooling tubes for heat exchangers and condenser units have applications in multiple high-value manufacturing industries. Grade 2 commercially pure titanium (CP-2 Ti) requires far less mass to achieve the same mass flow handling abilities as stainless steel tubing yet it is more challenging to join, particularly at wall thicknesses less than 500 μm (termed ultra-thin walled tube). This paper presents a single-pass joinery method that produces reliable welds on 2.275 mm outer diameter (OD), 160 ± 10 μm wall thickness tubing with a service life of 20 of more years. This is achieved through an automated orbital gas tungsten constricted arc welding (GTCAW) process incorporating enveloping low-mass sleeves used in tandem with a buttressing internal gas pressure to support the molten metal and maintain consistent internal diameter inside the tube. The industrial applicability is demonstrated through the production of a 1:1 scale mock-up of a fixed geometry CO2 cooling circuit for a next-generation particle detector. The tensile strengths of the joints, 403.8 ± 4.2 MPa, exceed the tensile strength of the parent CP-2 Ti.
id oai-inspirehep.net-1849401
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
record_format invenio
spelling oai-inspirehep.net-18494012021-03-18T21:39:27Zdoi:10.1088/1748-0221/15/06/p06022http://cds.cern.ch/record/2756393engCooper, LCrouvizier, MEdwards, SFrench, RGannaway, FKemp-Russell, PMarin-Reyes, HMercer, IRendell-Read, AViehhauser, GYeadon, WIn situ micro gas tungsten constricted arc welding of ultra-thin walled 2.275 mm outer diameter grade 2 commercially pure titanium tubingDetectors and Experimental TechniquesUltra-thin walled cooling tubes for heat exchangers and condenser units have applications in multiple high-value manufacturing industries. Grade 2 commercially pure titanium (CP-2 Ti) requires far less mass to achieve the same mass flow handling abilities as stainless steel tubing yet it is more challenging to join, particularly at wall thicknesses less than 500 μm (termed ultra-thin walled tube). This paper presents a single-pass joinery method that produces reliable welds on 2.275 mm outer diameter (OD), 160 ± 10 μm wall thickness tubing with a service life of 20 of more years. This is achieved through an automated orbital gas tungsten constricted arc welding (GTCAW) process incorporating enveloping low-mass sleeves used in tandem with a buttressing internal gas pressure to support the molten metal and maintain consistent internal diameter inside the tube. The industrial applicability is demonstrated through the production of a 1:1 scale mock-up of a fixed geometry CO2 cooling circuit for a next-generation particle detector. The tensile strengths of the joints, 403.8 ± 4.2 MPa, exceed the tensile strength of the parent CP-2 Ti.oai:inspirehep.net:18494012020
spellingShingle Detectors and Experimental Techniques
Cooper, L
Crouvizier, M
Edwards, S
French, R
Gannaway, F
Kemp-Russell, P
Marin-Reyes, H
Mercer, I
Rendell-Read, A
Viehhauser, G
Yeadon, W
In situ micro gas tungsten constricted arc welding of ultra-thin walled 2.275 mm outer diameter grade 2 commercially pure titanium tubing
title In situ micro gas tungsten constricted arc welding of ultra-thin walled 2.275 mm outer diameter grade 2 commercially pure titanium tubing
title_full In situ micro gas tungsten constricted arc welding of ultra-thin walled 2.275 mm outer diameter grade 2 commercially pure titanium tubing
title_fullStr In situ micro gas tungsten constricted arc welding of ultra-thin walled 2.275 mm outer diameter grade 2 commercially pure titanium tubing
title_full_unstemmed In situ micro gas tungsten constricted arc welding of ultra-thin walled 2.275 mm outer diameter grade 2 commercially pure titanium tubing
title_short In situ micro gas tungsten constricted arc welding of ultra-thin walled 2.275 mm outer diameter grade 2 commercially pure titanium tubing
title_sort in situ micro gas tungsten constricted arc welding of ultra-thin walled 2.275 mm outer diameter grade 2 commercially pure titanium tubing
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1088/1748-0221/15/06/p06022
http://cds.cern.ch/record/2756393
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