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autor L. Rogers, R.A. Clark, B.J.P. Jones, A.D. McDonald, D.R. Nygren, F. Psihas, C. Adams, V. Álvarez, L. Arazi, C.D.R Azevedo, K. Bailey, F. Ballester, J.M. Benlloch-Rodríguez, F.I.G.M. Borges, A. Botas, S. Cárcel, J.V. Carrión, S. Cebrián, C.A.N. Conde, J. Díaz, M. Diesburg, J. Escada, R. Esteve, R. Felkai, A.F.M. Fernandes, L.M.P. Fernandes, P. Ferrario, A.L. Ferreira, E.D.C. Freitas, J. Generowicz, A. Goldschmidt, J.J. Gómez-Cadenas, D. González-Díaz, R. Guenette, R.M. Gutiérrez, K. Hafidi, J. Hauptman, C.A.O. Henriques, A.I. Hernandez, J.A. Hernando Morata, V. Herrero, S. Johnston, M. Kekic, L. Labarga, A. Laing, P. Lebrun, N. López-March, M. Losada, R.D.P. Mano, J. Martín-Albo, A. Martínez, G. Martínez-Lema, F. Monrabal, C.M.B. Monteiro, F.J. Mora, J. Muñoz Vidal, M. Musti, M. Nebot-Guinot, P. Novella, B. Palmeiro, A. Para, J. Pérez, M. Querol, J. Renner, J. Repond, S. Riordan, L. Ripoll, J. Rodríguez, C. Romo-Luque, F.P. Santos, J.M.F. dos Santos, A. Simón, C. Sofka, M. Sorel, T. Stiegler, J.F. Toledo, J. Torrent, J.F.C.A. Veloso, R. Webb, J.T. White and N. Yahlali
beschreibung High pressure gas time projection chambers (HPGTPCs) are made with a variety of materials, many of which still await proper characterization in high pressure noble gas environments. As HPGTPCs increase in size toward ton-scale detectors, assemblies become larger and more complex, creating a need for detailed understanding of how structural supports and high voltage insulators behave. This includes identification of materials with predictable mechanical properties and without surface charge accumulation that may lead to field deformation or sparking. This paper explores the mechanical and electrical effects of high pressure gas environments on insulating polymers PTFE, HDPE, PEEK, POM and UHMW in argon and xenon, including studying gas absorption, swelling and high voltage insulation strength.
citation_standardnr 6339714
datenlieferant ipn_articles
feed_id 66992
feed_publisher Institute of Physics Publishing (IOP)
feed_publisher_url http://www.iop.org/
insertion_date 2018-10-02
journaleissn 1748-0221
publikationsjahr_anzeige 2018
publikationsjahr_facette 2018
publikationsjahr_intervall 7984:2015-2019
publikationsjahr_sort 2018
publisher Institute of Physics Publishing (IOP)
quelle Journal of Instrumentation
relation http://iopscience.iop.org/1748-0221/13/10/P10002
search_space articles
shingle_author_1 L. Rogers, R.A. Clark, B.J.P. Jones, A.D. McDonald, D.R. Nygren, F. Psihas, C. Adams, V. Álvarez, L. Arazi, C.D.R Azevedo, K. Bailey, F. Ballester, J.M. Benlloch-Rodríguez, F.I.G.M. Borges, A. Botas, S. Cárcel, J.V. Carrión, S. Cebrián, C.A.N. Conde, J. Díaz, M. Diesburg, J. Escada, R. Esteve, R. Felkai, A.F.M. Fernandes, L.M.P. Fernandes, P. Ferrario, A.L. Ferreira, E.D.C. Freitas, J. Generowicz, A. Goldschmidt, J.J. Gómez-Cadenas, D. González-Díaz, R. Guenette, R.M. Gutiérrez, K. Hafidi, J. Hauptman, C.A.O. Henriques, A.I. Hernandez, J.A. Hernando Morata, V. Herrero, S. Johnston, M. Kekic, L. Labarga, A. Laing, P. Lebrun, N. López-March, M. Losada, R.D.P. Mano, J. Martín-Albo, A. Martínez, G. Martínez-Lema, F. Monrabal, C.M.B. Monteiro, F.J. Mora, J. Muñoz Vidal, M. Musti, M. Nebot-Guinot, P. Novella, B. Palmeiro, A. Para, J. Pérez, M. Querol, J. Renner, J. Repond, S. Riordan, L. Ripoll, J. Rodríguez, C. Romo-Luque, F.P. Santos, J.M.F. dos Santos, A. Simón, C. Sofka, M. Sorel, T. Stiegler, J.F. Toledo, J. Torrent, J.F.C.A. Veloso, R. Webb, J.T. White and N. Yahlali
shingle_author_2 L. Rogers, R.A. Clark, B.J.P. Jones, A.D. McDonald, D.R. Nygren, F. Psihas, C. Adams, V. Álvarez, L. Arazi, C.D.R Azevedo, K. Bailey, F. Ballester, J.M. Benlloch-Rodríguez, F.I.G.M. Borges, A. Botas, S. Cárcel, J.V. Carrión, S. Cebrián, C.A.N. Conde, J. Díaz, M. Diesburg, J. Escada, R. Esteve, R. Felkai, A.F.M. Fernandes, L.M.P. Fernandes, P. Ferrario, A.L. Ferreira, E.D.C. Freitas, J. Generowicz, A. Goldschmidt, J.J. Gómez-Cadenas, D. González-Díaz, R. Guenette, R.M. Gutiérrez, K. Hafidi, J. Hauptman, C.A.O. Henriques, A.I. Hernandez, J.A. Hernando Morata, V. Herrero, S. Johnston, M. Kekic, L. Labarga, A. Laing, P. Lebrun, N. López-March, M. Losada, R.D.P. Mano, J. Martín-Albo, A. Martínez, G. Martínez-Lema, F. Monrabal, C.M.B. Monteiro, F.J. Mora, J. Muñoz Vidal, M. Musti, M. Nebot-Guinot, P. Novella, B. Palmeiro, A. Para, J. Pérez, M. Querol, J. Renner, J. Repond, S. Riordan, L. Ripoll, J. Rodríguez, C. Romo-Luque, F.P. Santos, J.M.F. dos Santos, A. Simón, C. Sofka, M. Sorel, T. Stiegler, J.F. Toledo, J. Torrent, J.F.C.A. Veloso, R. Webb, J.T. White and N. Yahlali
shingle_author_3 L. Rogers, R.A. Clark, B.J.P. Jones, A.D. McDonald, D.R. Nygren, F. Psihas, C. Adams, V. Álvarez, L. Arazi, C.D.R Azevedo, K. Bailey, F. Ballester, J.M. Benlloch-Rodríguez, F.I.G.M. Borges, A. Botas, S. Cárcel, J.V. Carrión, S. Cebrián, C.A.N. Conde, J. Díaz, M. Diesburg, J. Escada, R. Esteve, R. Felkai, A.F.M. Fernandes, L.M.P. Fernandes, P. Ferrario, A.L. Ferreira, E.D.C. Freitas, J. Generowicz, A. Goldschmidt, J.J. Gómez-Cadenas, D. González-Díaz, R. Guenette, R.M. Gutiérrez, K. Hafidi, J. Hauptman, C.A.O. Henriques, A.I. Hernandez, J.A. Hernando Morata, V. Herrero, S. Johnston, M. Kekic, L. Labarga, A. Laing, P. Lebrun, N. López-March, M. Losada, R.D.P. Mano, J. Martín-Albo, A. Martínez, G. Martínez-Lema, F. Monrabal, C.M.B. Monteiro, F.J. Mora, J. Muñoz Vidal, M. Musti, M. Nebot-Guinot, P. Novella, B. Palmeiro, A. Para, J. Pérez, M. Querol, J. Renner, J. Repond, S. Riordan, L. Ripoll, J. Rodríguez, C. Romo-Luque, F.P. Santos, J.M.F. dos Santos, A. Simón, C. Sofka, M. Sorel, T. Stiegler, J.F. Toledo, J. Torrent, J.F.C.A. Veloso, R. Webb, J.T. White and N. Yahlali
shingle_author_4 L. Rogers, R.A. Clark, B.J.P. Jones, A.D. McDonald, D.R. Nygren, F. Psihas, C. Adams, V. Álvarez, L. Arazi, C.D.R Azevedo, K. Bailey, F. Ballester, J.M. Benlloch-Rodríguez, F.I.G.M. Borges, A. Botas, S. Cárcel, J.V. Carrión, S. Cebrián, C.A.N. Conde, J. Díaz, M. Diesburg, J. Escada, R. Esteve, R. Felkai, A.F.M. Fernandes, L.M.P. Fernandes, P. Ferrario, A.L. Ferreira, E.D.C. Freitas, J. Generowicz, A. Goldschmidt, J.J. Gómez-Cadenas, D. González-Díaz, R. Guenette, R.M. Gutiérrez, K. Hafidi, J. Hauptman, C.A.O. Henriques, A.I. Hernandez, J.A. Hernando Morata, V. Herrero, S. Johnston, M. Kekic, L. Labarga, A. Laing, P. Lebrun, N. López-March, M. Losada, R.D.P. Mano, J. Martín-Albo, A. Martínez, G. Martínez-Lema, F. Monrabal, C.M.B. Monteiro, F.J. Mora, J. Muñoz Vidal, M. Musti, M. Nebot-Guinot, P. Novella, B. Palmeiro, A. Para, J. Pérez, M. Querol, J. Renner, J. Repond, S. Riordan, L. Ripoll, J. Rodríguez, C. Romo-Luque, F.P. Santos, J.M.F. dos Santos, A. Simón, C. Sofka, M. Sorel, T. Stiegler, J.F. Toledo, J. Torrent, J.F.C.A. Veloso, R. Webb, J.T. White and N. Yahlali
shingle_catch_all_1 High voltage insulation and gas absorption of polymers in high pressure argon and xenon gases
High pressure gas time projection chambers (HPGTPCs) are made with a variety of materials, many of which still await proper characterization in high pressure noble gas environments. As HPGTPCs increase in size toward ton-scale detectors, assemblies become larger and more complex, creating a need for detailed understanding of how structural supports and high voltage insulators behave. This includes identification of materials with predictable mechanical properties and without surface charge accumulation that may lead to field deformation or sparking. This paper explores the mechanical and electrical effects of high pressure gas environments on insulating polymers PTFE, HDPE, PEEK, POM and UHMW in argon and xenon, including studying gas absorption, swelling and high voltage insulation strength.
L. Rogers, R.A. Clark, B.J.P. Jones, A.D. McDonald, D.R. Nygren, F. Psihas, C. Adams, V. Álvarez, L. Arazi, C.D.R Azevedo, K. Bailey, F. Ballester, J.M. Benlloch-Rodríguez, F.I.G.M. Borges, A. Botas, S. Cárcel, J.V. Carrión, S. Cebrián, C.A.N. Conde, J. Díaz, M. Diesburg, J. Escada, R. Esteve, R. Felkai, A.F.M. Fernandes, L.M.P. Fernandes, P. Ferrario, A.L. Ferreira, E.D.C. Freitas, J. Generowicz, A. Goldschmidt, J.J. Gómez-Cadenas, D. González-Díaz, R. Guenette, R.M. Gutiérrez, K. Hafidi, J. Hauptman, C.A.O. Henriques, A.I. Hernandez, J.A. Hernando Morata, V. Herrero, S. Johnston, M. Kekic, L. Labarga, A. Laing, P. Lebrun, N. López-March, M. Losada, R.D.P. Mano, J. Martín-Albo, A. Martínez, G. Martínez-Lema, F. Monrabal, C.M.B. Monteiro, F.J. Mora, J. Muñoz Vidal, M. Musti, M. Nebot-Guinot, P. Novella, B. Palmeiro, A. Para, J. Pérez, M. Querol, J. Renner, J. Repond, S. Riordan, L. Ripoll, J. Rodríguez, C. Romo-Luque, F.P. Santos, J.M.F. dos Santos, A. Simón, C. Sofka, M. Sorel, T. Stiegler, J.F. Toledo, J. Torrent, J.F.C.A. Veloso, R. Webb, J.T. White and N. Yahlali
Institute of Physics Publishing (IOP)
1748-0221
17480221
shingle_catch_all_2 High voltage insulation and gas absorption of polymers in high pressure argon and xenon gases
High pressure gas time projection chambers (HPGTPCs) are made with a variety of materials, many of which still await proper characterization in high pressure noble gas environments. As HPGTPCs increase in size toward ton-scale detectors, assemblies become larger and more complex, creating a need for detailed understanding of how structural supports and high voltage insulators behave. This includes identification of materials with predictable mechanical properties and without surface charge accumulation that may lead to field deformation or sparking. This paper explores the mechanical and electrical effects of high pressure gas environments on insulating polymers PTFE, HDPE, PEEK, POM and UHMW in argon and xenon, including studying gas absorption, swelling and high voltage insulation strength.
L. Rogers, R.A. Clark, B.J.P. Jones, A.D. McDonald, D.R. Nygren, F. Psihas, C. Adams, V. Álvarez, L. Arazi, C.D.R Azevedo, K. Bailey, F. Ballester, J.M. Benlloch-Rodríguez, F.I.G.M. Borges, A. Botas, S. Cárcel, J.V. Carrión, S. Cebrián, C.A.N. Conde, J. Díaz, M. Diesburg, J. Escada, R. Esteve, R. Felkai, A.F.M. Fernandes, L.M.P. Fernandes, P. Ferrario, A.L. Ferreira, E.D.C. Freitas, J. Generowicz, A. Goldschmidt, J.J. Gómez-Cadenas, D. González-Díaz, R. Guenette, R.M. Gutiérrez, K. Hafidi, J. Hauptman, C.A.O. Henriques, A.I. Hernandez, J.A. Hernando Morata, V. Herrero, S. Johnston, M. Kekic, L. Labarga, A. Laing, P. Lebrun, N. López-March, M. Losada, R.D.P. Mano, J. Martín-Albo, A. Martínez, G. Martínez-Lema, F. Monrabal, C.M.B. Monteiro, F.J. Mora, J. Muñoz Vidal, M. Musti, M. Nebot-Guinot, P. Novella, B. Palmeiro, A. Para, J. Pérez, M. Querol, J. Renner, J. Repond, S. Riordan, L. Ripoll, J. Rodríguez, C. Romo-Luque, F.P. Santos, J.M.F. dos Santos, A. Simón, C. Sofka, M. Sorel, T. Stiegler, J.F. Toledo, J. Torrent, J.F.C.A. Veloso, R. Webb, J.T. White and N. Yahlali
Institute of Physics Publishing (IOP)
1748-0221
17480221
shingle_catch_all_3 High voltage insulation and gas absorption of polymers in high pressure argon and xenon gases
High pressure gas time projection chambers (HPGTPCs) are made with a variety of materials, many of which still await proper characterization in high pressure noble gas environments. As HPGTPCs increase in size toward ton-scale detectors, assemblies become larger and more complex, creating a need for detailed understanding of how structural supports and high voltage insulators behave. This includes identification of materials with predictable mechanical properties and without surface charge accumulation that may lead to field deformation or sparking. This paper explores the mechanical and electrical effects of high pressure gas environments on insulating polymers PTFE, HDPE, PEEK, POM and UHMW in argon and xenon, including studying gas absorption, swelling and high voltage insulation strength.
L. Rogers, R.A. Clark, B.J.P. Jones, A.D. McDonald, D.R. Nygren, F. Psihas, C. Adams, V. Álvarez, L. Arazi, C.D.R Azevedo, K. Bailey, F. Ballester, J.M. Benlloch-Rodríguez, F.I.G.M. Borges, A. Botas, S. Cárcel, J.V. Carrión, S. Cebrián, C.A.N. Conde, J. Díaz, M. Diesburg, J. Escada, R. Esteve, R. Felkai, A.F.M. Fernandes, L.M.P. Fernandes, P. Ferrario, A.L. Ferreira, E.D.C. Freitas, J. Generowicz, A. Goldschmidt, J.J. Gómez-Cadenas, D. González-Díaz, R. Guenette, R.M. Gutiérrez, K. Hafidi, J. Hauptman, C.A.O. Henriques, A.I. Hernandez, J.A. Hernando Morata, V. Herrero, S. Johnston, M. Kekic, L. Labarga, A. Laing, P. Lebrun, N. López-March, M. Losada, R.D.P. Mano, J. Martín-Albo, A. Martínez, G. Martínez-Lema, F. Monrabal, C.M.B. Monteiro, F.J. Mora, J. Muñoz Vidal, M. Musti, M. Nebot-Guinot, P. Novella, B. Palmeiro, A. Para, J. Pérez, M. Querol, J. Renner, J. Repond, S. Riordan, L. Ripoll, J. Rodríguez, C. Romo-Luque, F.P. Santos, J.M.F. dos Santos, A. Simón, C. Sofka, M. Sorel, T. Stiegler, J.F. Toledo, J. Torrent, J.F.C.A. Veloso, R. Webb, J.T. White and N. Yahlali
Institute of Physics Publishing (IOP)
1748-0221
17480221
shingle_catch_all_4 High voltage insulation and gas absorption of polymers in high pressure argon and xenon gases
High pressure gas time projection chambers (HPGTPCs) are made with a variety of materials, many of which still await proper characterization in high pressure noble gas environments. As HPGTPCs increase in size toward ton-scale detectors, assemblies become larger and more complex, creating a need for detailed understanding of how structural supports and high voltage insulators behave. This includes identification of materials with predictable mechanical properties and without surface charge accumulation that may lead to field deformation or sparking. This paper explores the mechanical and electrical effects of high pressure gas environments on insulating polymers PTFE, HDPE, PEEK, POM and UHMW in argon and xenon, including studying gas absorption, swelling and high voltage insulation strength.
L. Rogers, R.A. Clark, B.J.P. Jones, A.D. McDonald, D.R. Nygren, F. Psihas, C. Adams, V. Álvarez, L. Arazi, C.D.R Azevedo, K. Bailey, F. Ballester, J.M. Benlloch-Rodríguez, F.I.G.M. Borges, A. Botas, S. Cárcel, J.V. Carrión, S. Cebrián, C.A.N. Conde, J. Díaz, M. Diesburg, J. Escada, R. Esteve, R. Felkai, A.F.M. Fernandes, L.M.P. Fernandes, P. Ferrario, A.L. Ferreira, E.D.C. Freitas, J. Generowicz, A. Goldschmidt, J.J. Gómez-Cadenas, D. González-Díaz, R. Guenette, R.M. Gutiérrez, K. Hafidi, J. Hauptman, C.A.O. Henriques, A.I. Hernandez, J.A. Hernando Morata, V. Herrero, S. Johnston, M. Kekic, L. Labarga, A. Laing, P. Lebrun, N. López-March, M. Losada, R.D.P. Mano, J. Martín-Albo, A. Martínez, G. Martínez-Lema, F. Monrabal, C.M.B. Monteiro, F.J. Mora, J. Muñoz Vidal, M. Musti, M. Nebot-Guinot, P. Novella, B. Palmeiro, A. Para, J. Pérez, M. Querol, J. Renner, J. Repond, S. Riordan, L. Ripoll, J. Rodríguez, C. Romo-Luque, F.P. Santos, J.M.F. dos Santos, A. Simón, C. Sofka, M. Sorel, T. Stiegler, J.F. Toledo, J. Torrent, J.F.C.A. Veloso, R. Webb, J.T. White and N. Yahlali
Institute of Physics Publishing (IOP)
1748-0221
17480221
shingle_title_1 High voltage insulation and gas absorption of polymers in high pressure argon and xenon gases
shingle_title_2 High voltage insulation and gas absorption of polymers in high pressure argon and xenon gases
shingle_title_3 High voltage insulation and gas absorption of polymers in high pressure argon and xenon gases
shingle_title_4 High voltage insulation and gas absorption of polymers in high pressure argon and xenon gases
timestamp 2025-06-30T23:36:58.748Z
titel High voltage insulation and gas absorption of polymers in high pressure argon and xenon gases
titel_suche High voltage insulation and gas absorption of polymers in high pressure argon and xenon gases
topic U
uid ipn_articles_6339714