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Kinetics of Hydride Precipitation in Zirconium - Hydride precipitation and reorientation in zirconium alloys studied in-situ using synchrotron radiation - Colas, Kimberly
Vergriffenes Buch, derzeit bei uns nicht verfügbar.
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Colas, Kimberly:
Kinetics of Hydride Precipitation in Zirconium - Hydride precipitation and reorientation in zirconium alloys studied in-situ using synchrotron radiation - Taschenbuch

2010, ISBN: 9783639246575

[ED: Taschenbuch / Paperback], [PU: VDM Verlag Dr. Müller], The orientation and distribution of hydrides formed in zirconium alloy nuclear fuel cladding can strongly influence material behavior and in particular resistance to crack growth. The hydride microstructure and platelet orientation are crucial to determining cladding failure during mechanical testing. Hydride formation is normally studied by post-facto metallography, performed at room temperature and in the absence of applied stress. This study uses synchrotron radiation to observe in- situ the kinetics of hydride dissolution and precipitation in previously hydrided Zircaloy samples. The experiments allowed the direct observation of hydride dissolution, re- precipitation, and re-orientation, when cooling was performed under load. The solubility limits and the hydride-matrix orientation relationship determined from in-situ experiments were in good agreement with previous conventional bulk post facto examinations. In-situ measurements under stress and at temperature showed a characteristic diffraction signature of reoriented hydrides. The results suggest a threshold stress for hydride reorientation between 75 and 80 MPa for the microstructure / texture studied., DE, [SC: 0.00], Neuware, gewerbliches Angebot, 124, [GW: 177g], Selbstabholung und Barzahlung, PayPal, offene Rechnung, Banküberweisung, Transporte marítimo internacional

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Kinetics of Hydride Precipitation in Zirconium - Hydride precipitation and reorientation in zirconium alloys studied in-situ using synchrotron radiation
Vergriffenes Buch, derzeit bei uns nicht verfügbar.
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Kinetics of Hydride Precipitation in Zirconium - Hydride precipitation and reorientation in zirconium alloys studied in-situ using synchrotron radiation - Taschenbuch

2010, ISBN: 9783639246575

[ED: Taschenbuch / Paperback], [PU: VDM Verlag Dr. Müller], The orientation and distribution of hydrides formed in zirconium alloy nuclear fuel cladding can strongly influence material behavior and in particular resistance to crack growth. The hydride microstructure and platelet orientation are crucial to determining cladding failure during mechanical testing. Hydride formation is normally studied by post-facto metallography, performed at room temperature and in the absence of applied stress. This study uses synchrotron radiation to observe in- situ the kinetics of hydride dissolution and precipitation in previously hydrided Zircaloy samples. The experiments allowed the direct observation of hydride dissolution, re- precipitation, and re-orientation, when cooling was performed under load. The solubility limits and the hydride-matrix orientation relationship determined from in-situ experiments were in good agreement with previous conventional bulk post facto examinations. In-situ measurements under stress and at temperature showed a characteristic diffraction signature of reoriented hydrides. The results suggest a threshold stress for hydride reorientation between 75 and 80 MPa for the microstructure / texture studied., [SC: 0.00], Neuware, gewerbliches Angebot, [GW: 177g]

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Kinetics of Hydride Precipitation in Zirconium - Hydride precipitation and reorientation in zirconium alloys studied in-situ using synchrotron radiation
Vergriffenes Buch, derzeit bei uns nicht verfügbar.
(*)
Kinetics of Hydride Precipitation in Zirconium - Hydride precipitation and reorientation in zirconium alloys studied in-situ using synchrotron radiation - Taschenbuch

2010, ISBN: 9783639246575

[ED: Taschenbuch / Paperback], [PU: VDM Verlag Dr. Müller], The orientation and distribution of hydrides formed in zirconium alloy nuclear fuel cladding can strongly influence material behavior and in particular resistance to crack growth. The hydride microstructure and platelet orientation are crucial to determining cladding failure during mechanical testing. Hydride formation is normally studied by post-facto metallography, performed at room temperature and in the absence of applied stress. This study uses synchrotron radiation to observe in- situ the kinetics of hydride dissolution and precipitation in previously hydrided Zircaloy samples. The experiments allowed the direct observation of hydride dissolution, re- precipitation, and re-orientation, when cooling was performed under load. The solubility limits and the hydride-matrix orientation relationship determined from in-situ experiments were in good agreement with previous conventional bulk post facto examinations. In-situ measurements under stress and at temperature showed a characteristic diffraction signature of reoriented hydrides. The results suggest a threshold stress for hydride reorientation between 75 and 80 MPa for the microstructure / texture studied., [SC: 3.00], Neuware, gewerbliches Angebot, [GW: 177g]

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Kinetics of Hydride Precipitation in Zirconium - Kimberly Colas
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Kimberly Colas:
Kinetics of Hydride Precipitation in Zirconium - neues Buch

2010, ISBN: 9783639246575

ID: 14171229

The orientation and distribution of hydrides formed in zirconium alloy nuclear fuel cladding can strongly influence material behavior and in particular resistance to crack growth. The hydride microstructure and platelet orientation are crucial to determining cladding failure during mechanical testing. Hydride formation is normally studied by post-facto metallography, performed at room temperature and in the absence of applied stress. This study uses synchrotron radiation to observe in- situ the kinetics of hydride dissolution and precipitation in previously hydrided Zircaloy samples. The experiments allowed the direct observation of hydride dissolution, re- precipitation, and re-orientation, when cooling was performed under load. The solubility limits and the hydride-matrix orientation relationship determined from in-situ experiments were in good agreement with previous conventional bulk post facto examinations. In-situ measurements under stress and at temperature showed a characteristic diffraction signature of reoriented hydrides. The results suggest a threshold stress for hydride reorientation between 75 and 80 MPa for the microstructure / texture studied. Hydride precipitation and reorientation in zirconium alloys studied in-situ using synchrotron radiation Bücher > Fremdsprachige Bücher > Englische Bücher Taschenbuch 01.03.2010 Buch (fremdspr.), VDM, .201

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Kinetics of Hydride Precipitation in Zirconium - Kimberly Colas
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Kimberly Colas:
Kinetics of Hydride Precipitation in Zirconium - neues Buch

ISBN: 9783639246575

ID: 747134974

The orientation and distribution of hydrides formed in zirconium alloy nuclear fuel cladding can strongly influence material behavior and in particular resistance to crack growth. The hydride microstructure and platelet orientation are crucial to determining cladding failure during mechanical testing. Hydride formation is normally studied by post-facto metallography, performed at room temperature and in the absence of applied stress. This study uses synchrotron radiation to observe in- situ the kinetics of hydride dissolution and precipitation in previously hydrided Zircaloy samples. The experiments allowed the direct observation of hydride dissolution, re- precipitation, and re-orientation, when cooling was performed under load. The solubility limits and the hydride-matrix orientation relationship determined from in-situ experiments were in good agreement with previous conventional bulk post facto examinations. In-situ measurements under stress and at temperature showed a characteristic diffraction signature of reoriented hydrides. The results suggest a threshold stress for hydride reorientation between 75 and 80 MPa for the microstructure / texture studied. Hydride precipitation and reorientation in zirconium alloys studied in-situ using synchrotron radiation Buch (fremdspr.) Bücher>Fremdsprachige Bücher>Englische Bücher, VDM

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Details zum Buch
Kinetics of Hydride Precipitation in Zirconium: Hydride precipitation and reorientation in zirconium alloys studied in-situ using synchrotron radiation
Autor:

Colas, Kimberly

Titel:

Kinetics of Hydride Precipitation in Zirconium: Hydride precipitation and reorientation in zirconium alloys studied in-situ using synchrotron radiation

ISBN-Nummer:

The orientation and distribution of hydrides formed in zirconium alloy nuclear fuel cladding can strongly influence material behavior and in particular resistance to crack growth. The hydride microstructure and platelet orientation are crucial to determining cladding failure during mechanical testing. Hydride formation is normally studied by post-facto metallography, performed at room temperature and in the absence of applied stress. This study uses synchrotron radiation to observe in- situ the kinetics of hydride dissolution and precipitation in previously hydrided Zircaloy samples. The experiments allowed the direct observation of hydride dissolution, re- precipitation, and re-orientation, when cooling was performed under load. The solubility limits and the hydride-matrix orientation relationship determined from in-situ experiments were in good agreement with previous conventional bulk post facto examinations. In-situ measurements under stress and at temperature showed a characteristic diffraction signature of reoriented hydrides. The results suggest a threshold stress for hydride reorientation between 75 and 80 MPa for the microstructure / texture studied.

Detailangaben zum Buch - Kinetics of Hydride Precipitation in Zirconium: Hydride precipitation and reorientation in zirconium alloys studied in-situ using synchrotron radiation


EAN (ISBN-13): 9783639246575
ISBN (ISBN-10): 3639246578
Gebundene Ausgabe
Taschenbuch
Erscheinungsjahr: 2010
Herausgeber: VDM Verlag

Buch in der Datenbank seit 10.12.2007 10:22:51
Buch zuletzt gefunden am 28.05.2017 01:06:02
ISBN/EAN: 9783639246575

ISBN - alternative Schreibweisen:
3-639-24657-8, 978-3-639-24657-5


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