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Effect of a surface oxide-dispersion-strengthened layer on mechanical strength of zircaloy-4 tubes
- Source :
- Nuclear Engineering and Technology, Vol 50, Iss 2, Pp 218-222 (2018)
- Publication Year :
- 2018
- Publisher :
- Elsevier, 2018.
-
Abstract
- An oxide-dispersion-strengthened (ODS) layer was formed on Zircaloy-4 tubes by a laser beam scanning process to increase mechanical strength. Laser beam was used to scan the yttrium oxide (Y2O3)–coated Zircaloy-4 tube to induce the penetration of Y2O3 particles into Zircaloy-4. Laser surface treatment resulted in the formation of an ODS layer as well as microstructural phase transformation at the surface of the tube. The mechanical strength of Zircaloy-4 increased with the formation of the ODS layer. The ring-tensile strength of Zircaloy-4 increased from 790 to 870 MPa at room temperature, from 500 to 575 MPa at 380°C, and from 385 to 470 MPa at 500°C. Strengthening became more effective as the test temperature increased. It was noted that brittle fracture occurred at room temperature, which was not observed at elevated temperatures. Resistance to dynamic high-temperature bursting improved. The burst temperature increased from 760 to 830°C at a heating rate of 5°C/s and internal pressure of 8.3 MPa. The burst opening was also smaller than those in fresh Zircaloy-4 tubes. This method is expected to enhance the safety of Zr fuel cladding tubes owing to the improvement of their mechanical properties. Keywords: Laser Surface Treatment, Microstructure, Oxide Dispersion Strengthened Alloy, Tensile Strength, Zirconium Alloy
- Subjects :
- 010302 applied physics
Materials science
Zirconium alloy
Oxide
chemistry.chemical_element
Internal pressure
02 engineering and technology
Penetration (firestop)
Yttrium
021001 nanoscience & nanotechnology
Laser
01 natural sciences
lcsh:TK9001-9401
law.invention
chemistry.chemical_compound
Nuclear Energy and Engineering
chemistry
law
0103 physical sciences
Mechanical strength
lcsh:Nuclear engineering. Atomic power
Composite material
0210 nano-technology
Surface oxide
Subjects
Details
- Language :
- English
- ISSN :
- 17385733
- Volume :
- 50
- Issue :
- 2
- Database :
- OpenAIRE
- Journal :
- Nuclear Engineering and Technology
- Accession number :
- edsair.doi.dedup.....9996f68e77c66c048d5fc9deede5b372