Heavy ion irradiation induced defects in Zircaloy-4

被引:0
|
作者
Izerrouken, M. [1 ]
Hazem, R. [2 ]
Yahsi, U. [3 ]
Naceri, S. E. [4 ]
Tav, C. [3 ]
Kuzeci, S. [3 ,5 ]
Sari, A. [6 ]
Haid, F. [7 ]
Ishaq, A. [8 ]
Menchi, O. [1 ]
Ghamnia, M. [4 ]
机构
[1] Nucl Res Ctr Draria, Bp 43 Sebbala, Algiers, Algeria
[2] Univ MHamed Bougara Boumerdes, URMPE Unit, Boumerdes 35000, Algeria
[3] Marmara Univ, Fac Arts & Sci, Phys Dept, TR-34722 Goztepe, Turkey
[4] Oran 1 Univ, LSMC Lab, Ahmed Ben Bella 31100, Oran, Algeria
[5] Coll Educ Pure Sci, Phys Dept, Kirkuk, Iraq
[6] Nucl Res Ctr Birine, BP 108, Djelfa, Algeria
[7] Ctr Dev Adv Technol, Cite 20 Aout 1956,Bp 17, Algiers, Algeria
[8] Natl Ctr Phys, NCP Joint Int Res Ctr Adv Nanomat & Defects Engn, Islamabad, Pakistan
关键词
research reactor; Zircaloy-4; vacancies; dislocation loops; mechanical property; radiation damage; positron annihilation techniques;
D O I
10.1088/1402-4896/abe3bf
中图分类号
O4 [物理学];
学科分类号
0702 ;
摘要
Radiation damage induced in Zircaloy-4 by 20 MeV Au ions was investigated using Grazing x-ray diffraction (GIXRD), positron annihilation techniques, micro-and nano-hardness techniques. The irradiations were performed at room temperature in the fluence range 1 x 10(13)-5 x 10(14) ions cm(-2) corresponding to 0.07-3.63 displacements per atom (dpa). The grazing incidence angle x-ray diffraction (GIXRD) revealed the presence of the hydride precipitates in the analyzed zircaloy-4. According to our experimental data it is found that the amount of these precipitates decreases after irradiation as emphasized by GIXRD and Positron Annihilation Lifetime Spectroscopy (PALS) results. The same data revealed also a zircaloy-4 swelling above a certain dose. From the combination of domain size/microstrain with the micro- and nano-hardness results, we conclude that the Zircaloy hardening is mainly due to the dislocation formation indicating the effect of the microstructure on the mechanical properties. Moreover, from the dose dependence of irradiation hardening we conclude that the transition point from low-dose to high-dose regime is observed around 0.07 dpa.
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页数:12
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