Structural, physical, and radiation absorption properties of a significant nuclear power plant component: A comparison between REX-734 and 316L SS austenitic stainless steels

Author:

Say Yakup1,Güler Ömer1,Kavaz Esra2,ALMisned Ghada3,Ene Antoaneta4,Tekin Huseyin Ozan56

Affiliation:

1. Rare Earth Elements Application and Research Center, Munzur University , 62000 , Tunceli , Turkey

2. Department of Physics, Faculty of Sciences, Ataturk University , 25240 , Erzurum , Turkey

3. Department of Physics, College of Science, Princess Nourah Bint Abdulrahman University , P.O. Box 84428 , Riyadh 11671 , Saudi Arabia

4. Department of Chemistry, Physics and Environment, INPOLDE Research Center, Faculty of Sciences and Environment, Dunarea de Jos University of Galati , 47 Domneasca Street, 800008 Galati , Romania

5. Department of Medical Diagnostic Imaging, College of Health Sciences, University of Sharjah , 27272 , Sharjah , United Arab Emirates

6. Computer Engineering Department, Istinye University, Faculty of Engineering and Natural Sciences , Istanbul , 34396 , Turkey

Abstract

Abstract Austenitic stainless steels (SSs) are commonly used as in-core and surrounding structural materials in today’s industrial BWR and PWR systems. Such adaptable steels have also been the primary materials studied and used in several advanced nuclear reactor technologies, such as fast breeding and magnetic fusion reactors. In this study, some critical material properties, such as structural, physical, and radiation-shielding properties of REX-734 and 316L SS, were experimentally evaluated and compared to those of a number of other alloys. In addition to homogeneous element distribution, both alloys exhibit strong crystal orientation. The REX-734 alloy has a tensile strength of 1,259 MPa, whereas the 316L SS alloy has a tensile strength of 495 MPa. Moreover, nitrogen in the REX-734 alloy formed ultra-hard nitrides with Cr, Nb, and Si and precipitated into the structure and increased the strength. According to our findings, the mass attenuation coefficient values of the 316L SS sample were slightly higher than those of the REX-734 sample at all energies. It can be concluded that the REX-734 sample, with its exceptional strength qualities and excellent radiation attenuation capabilities, may be a viable nuclear power plant material for future investigations.

Publisher

Walter de Gruyter GmbH

Subject

Materials Chemistry,General Chemistry

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