Published October 2005 | Version v1
Book

Irradiation effects on mechanical properties of fuel element cladding from thermal reactors

  • 1. Post Irradiation Examination Div., Bhabha Atomic Research Centre, Mumbai (India)

Description

During reactor operation, UO2 expands more than the cladding tube (Zirconium alloys for thermal reactors), is hotter, cracks and swells. The fuel therefore will interact with the cladding, resulting in straining of the later. To minimize the possibility of rupture of the cladding, ideally it should have good ductility as well as high strength. However, the ductility reduces with increase in fuel element burn-up. Increased burn-up also increases swelling of the fuel, leading to increased contact pressure between the fuel and the cladding tube. This would cause strains to be concentrated over localized regions of the cladding. For fuel elements burnup exceeding 40 GWd/T, the contribution of embrittlement due to hydriding, and the increased possibility of embrittlement due to stress corrosion cracking, also need to be considered. In addition to the tensile properties, the other mechanical properties of interest to the performance of cladding tube in an operating fuel element are creep rate and fatigue endurance. Irradiation is reported to have insignificant effect on high cycle endurance limit, and fatigue from fuel element vibration is most unlikely, to be life limiting. Even though creep rates due to irradiation are reported to increase by an order of magnitude, the cladding creep ductility would be so high that creep type failures in fuel element would be most improbable. Thus, the most important limiting aspect of mechanical performance of fuel element cladding has been recognized as the tensile ductility resulting from the stress conditions experienced by the cladding. Some specific fission products of threshold amount (if) deposited on the cladding, and hydride morphology (e.g. hydride lenses). The presentation will brief about irradiation damage in cladding materials and its significance, background of search for better Zirconium alloys as cladding materials, and elaborate on the types of mechanical tests need to be conducted for the evaluation of claddings designated for higher burn-up utilization, and application of the test results for the development of cladding failure models. (author)

Part of:
Cladding corrosion, embrittlement and pellet clad interaction: proceedings of theme meeting

Additional details

Publishing Information

Publisher
Board of Research in Nuclear Sciences
Imprint Place
Mumbai (India)
Imprint Title
Cladding corrosion, embrittlement and pellet clad interaction: proceedings of theme meeting
Imprint Pagination
179 p.
Journal Page Range
p. 78-82

Conference

Title
2. high burnup issues in nuclear fuels
Acronym
HBINF-2005
Dates
17 Oct 2005
Place
Mumbai (India)

Optional Information

Notes
23 figs.