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Using small Specimens technique in Nuclear Pressure Vessel survey: Studying Crack Propagation of Steel Used in Nuclear Pressure Vessel Using Small Specimen Technique - Softcover

 
9783639217186: Using small Specimens technique in Nuclear Pressure Vessel survey: Studying Crack Propagation of Steel Used in Nuclear Pressure Vessel Using Small Specimen Technique
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The objective of this work is to develop an adequate procedure to determine mechanical properties of nuclear reactor components by means of small specimen test technique. Atomic reactor power plant is a huge structure that the safety factor due to its special function is momentous. The irradiation can change the mechanical properties of the steel used in nuclear power plant structure. The radioactive effect on the vessel of nuclear power reactor causes radiation damage by altering the material properties of nuclear pressure vessel. The effects of the irradiation are mainly important on the toughness parameters (DBTT, KIC). In this work, instrumented Charpy tests was used to study and analyze the effect of specimen size and geometry on the dynamic fracture toughness of 15H2MFA steel used in nuclear pressure vessels of Paks atomic reactor in Hungary. Different concepts (function of the pressure vessel, fission phenomena, neutron interactions, swelling and radiation Creep) are discussed briefly to elaborate the concept of embrittlement and changes in DBTT of the steel in the nuclear reactor pressure vessel. Results show different factors affecting the DBTT curve of the tested steel.

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  • PublisherVDM Verlag Dr. Müller
  • Publication date2009
  • ISBN 10 3639217187
  • ISBN 13 9783639217186
  • BindingPaperback
  • Number of pages144

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Book Description Taschenbuch. Condition: Neu. This item is printed on demand - it takes 3-4 days longer - Neuware -The objective of this work is to develop an adequate procedure to determine mechanical properties of nuclear reactor components by means of small specimen test technique. Atomic reactor power plant is a huge structure that the safety factor due to its special function is momentous. The irradiation can change the mechanical properties of the steel used in nuclear power plant structure. The radioactive effect on the vessel of nuclear power reactor causes radiation damage by altering the material properties of nuclear pressure vessel. The effects of the irradiation are mainly important on the toughness parameters (DBTT, KIC). In this work, instrumented Charpy tests was used to study and analyze the effect of specimen size and geometry on the dynamic fracture toughness of 15H2MFA steel used in nuclear pressure vessels of Paks atomic reactor in Hungary. Different concepts (function of the pressure vessel, fission phenomena, neutron interactions, swelling and radiation Creep) are discussed briefly to elaborate the concept of embrittlement and changes in DBTT of the steel in the nuclear reactor pressure vessel. Results show different factors affecting the DBTT curve of the tested steel. 144 pp. Englisch. Seller Inventory # 9783639217186

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Book Description Taschenbuch. Condition: Neu. nach der Bestellung gedruckt Neuware - Printed after ordering - The objective of this work is to develop an adequate procedure to determine mechanical properties of nuclear reactor components by means of small specimen test technique. Atomic reactor power plant is a huge structure that the safety factor due to its special function is momentous. The irradiation can change the mechanical properties of the steel used in nuclear power plant structure. The radioactive effect on the vessel of nuclear power reactor causes radiation damage by altering the material properties of nuclear pressure vessel. The effects of the irradiation are mainly important on the toughness parameters (DBTT, KIC). In this work, instrumented Charpy tests was used to study and analyze the effect of specimen size and geometry on the dynamic fracture toughness of 15H2MFA steel used in nuclear pressure vessels of Paks atomic reactor in Hungary. Different concepts (function of the pressure vessel, fission phenomena, neutron interactions, swelling and radiation Creep) are discussed briefly to elaborate the concept of embrittlement and changes in DBTT of the steel in the nuclear reactor pressure vessel. Results show different factors affecting the DBTT curve of the tested steel. Seller Inventory # 9783639217186

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