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Assessment of the Mechanical Properties of Ultra-High Purity Niobium after Cold Work and Heat Treatment with the HL-LHC Crab Cavities as Benchmark

The High Luminosity Large Hadron Collider (HL-LHC) is the upgrade of the world’s largest particle collider; it will allow the full exploitation of the LHC potential and its operation beyond 2025. An essential part of the HL-LHC project are the Crab Cavities, that are particle de-flecting SRF cavitie...

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Autores principales: Gallifa Terricabras, Adria, Amorim Carvalho, Alexandre, Aviles Santillana, Ignacio, Barriere, Simon, Calaga, Rama, Cano Pleite, Eduardo, Capatina, Ofelia, Crouvizier, Mickael Denis, Dassa, Luca, Meyer, Mickael Sebastien, Valverde Alonso, Nuria, Benke, M, Hlavacs, A, Krallics, G J, Mertinger, V, Palotas, A B, Sepsi, M, Szabo, G, Szucs, M
Lenguaje:eng
Publicado: 2019
Acceso en línea:http://cds.cern.ch/record/2679586
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author Gallifa Terricabras, Adria
Amorim Carvalho, Alexandre
Aviles Santillana, Ignacio
Barriere, Simon
Calaga, Rama
Cano Pleite, Eduardo
Capatina, Ofelia
Crouvizier, Mickael Denis
Dassa, Luca
Meyer, Mickael Sebastien
Valverde Alonso, Nuria
Benke, M
Hlavacs, A
Krallics, G J
Mertinger, V
Palotas, A B
Sepsi, M
Szabo, G
Szucs, M
author_facet Gallifa Terricabras, Adria
Amorim Carvalho, Alexandre
Aviles Santillana, Ignacio
Barriere, Simon
Calaga, Rama
Cano Pleite, Eduardo
Capatina, Ofelia
Crouvizier, Mickael Denis
Dassa, Luca
Meyer, Mickael Sebastien
Valverde Alonso, Nuria
Benke, M
Hlavacs, A
Krallics, G J
Mertinger, V
Palotas, A B
Sepsi, M
Szabo, G
Szucs, M
author_sort Gallifa Terricabras, Adria
collection CERN
description The High Luminosity Large Hadron Collider (HL-LHC) is the upgrade of the world’s largest particle collider; it will allow the full exploitation of the LHC potential and its operation beyond 2025. An essential part of the HL-LHC project are the Crab Cavities, that are particle de-flecting SRF cavities of non-axisymmetric shape made of bulk ultra-high purity Nb. Since the cavities are produced by complex metal sheet forming processes, followed by a heat treatment (HT) for H outgassing (650 °C, 24 h), there is uncertainty on their mechanical properties after manu-facturing and in service conditions (2 K). Mechanical tests at room temperature have been conducted on RRR300 pure Nb samples. The samples were previously submitted, by cold cross-rolling, to different levels of plastic deformation representative of the effective plastic strain seen by the Nb sheets during forming operations. Moreover, a comparison of the mechanical properties of cold cross-rolled samples before and after HT has been established. Results of evolution of the microstructure and hardness are also presented. This study can be of interest for Nb cavities to be submitted to HT at 650 °C, and may help to push the design of novel SRF cavities.
id cern-2679586
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
record_format invenio
spelling cern-26795862022-08-10T12:23:30Zhttp://cds.cern.ch/record/2679586engGallifa Terricabras, AdriaAmorim Carvalho, AlexandreAviles Santillana, IgnacioBarriere, SimonCalaga, RamaCano Pleite, EduardoCapatina, OfeliaCrouvizier, Mickael DenisDassa, LucaMeyer, Mickael SebastienValverde Alonso, NuriaBenke, MHlavacs, AKrallics, G JMertinger, VPalotas, A BSepsi, MSzabo, GSzucs, MAssessment of the Mechanical Properties of Ultra-High Purity Niobium after Cold Work and Heat Treatment with the HL-LHC Crab Cavities as BenchmarkThe High Luminosity Large Hadron Collider (HL-LHC) is the upgrade of the world’s largest particle collider; it will allow the full exploitation of the LHC potential and its operation beyond 2025. An essential part of the HL-LHC project are the Crab Cavities, that are particle de-flecting SRF cavities of non-axisymmetric shape made of bulk ultra-high purity Nb. Since the cavities are produced by complex metal sheet forming processes, followed by a heat treatment (HT) for H outgassing (650 °C, 24 h), there is uncertainty on their mechanical properties after manu-facturing and in service conditions (2 K). Mechanical tests at room temperature have been conducted on RRR300 pure Nb samples. The samples were previously submitted, by cold cross-rolling, to different levels of plastic deformation representative of the effective plastic strain seen by the Nb sheets during forming operations. Moreover, a comparison of the mechanical properties of cold cross-rolled samples before and after HT has been established. Results of evolution of the microstructure and hardness are also presented. This study can be of interest for Nb cavities to be submitted to HT at 650 °C, and may help to push the design of novel SRF cavities.CERN-ACC-2019-0050oai:cds.cern.ch:26795862019-06-24
spellingShingle Gallifa Terricabras, Adria
Amorim Carvalho, Alexandre
Aviles Santillana, Ignacio
Barriere, Simon
Calaga, Rama
Cano Pleite, Eduardo
Capatina, Ofelia
Crouvizier, Mickael Denis
Dassa, Luca
Meyer, Mickael Sebastien
Valverde Alonso, Nuria
Benke, M
Hlavacs, A
Krallics, G J
Mertinger, V
Palotas, A B
Sepsi, M
Szabo, G
Szucs, M
Assessment of the Mechanical Properties of Ultra-High Purity Niobium after Cold Work and Heat Treatment with the HL-LHC Crab Cavities as Benchmark
title Assessment of the Mechanical Properties of Ultra-High Purity Niobium after Cold Work and Heat Treatment with the HL-LHC Crab Cavities as Benchmark
title_full Assessment of the Mechanical Properties of Ultra-High Purity Niobium after Cold Work and Heat Treatment with the HL-LHC Crab Cavities as Benchmark
title_fullStr Assessment of the Mechanical Properties of Ultra-High Purity Niobium after Cold Work and Heat Treatment with the HL-LHC Crab Cavities as Benchmark
title_full_unstemmed Assessment of the Mechanical Properties of Ultra-High Purity Niobium after Cold Work and Heat Treatment with the HL-LHC Crab Cavities as Benchmark
title_short Assessment of the Mechanical Properties of Ultra-High Purity Niobium after Cold Work and Heat Treatment with the HL-LHC Crab Cavities as Benchmark
title_sort assessment of the mechanical properties of ultra-high purity niobium after cold work and heat treatment with the hl-lhc crab cavities as benchmark
url http://cds.cern.ch/record/2679586
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