Faculty of Science and Arts, Physics Dept., Aksaray University, Aksaray, Turkey.
Appl Radiat Isot. 2021 Aug;174:109779. doi: 10.1016/j.apradiso.2021.109779. Epub 2021 May 19.
In the nuclear energy applications, hafnium, tantalum and tungsten are desirable materials in the production of super alloys for design of a nuclear power plant. In this study, cross sections calculations via TALYS-1.95, CEM03.01 and ALICE/ASH codes on Hf(n,p)Lu, Hf(n,p)Lu, Ta(n,p)Hf, W(n,p)Ta, W(n,p)Ta, W(n,p)Ta and W(n,p)Ta reactions were carried out to determine the effects of various level density models and pre-equilibrium models on excitation functions. Besides, we presented our calculation results using the different empirical systematics at 14.5 MeV. The present results are also compared with the experimental and the evaluated nuclear cross section data from TENDL-2019 and JEFF-3.3.
在核能应用中,铪、钽和钨是核电厂设计用超级合金生产中的理想材料。在这项研究中,通过 TALYS-1.95、CEM03.01 和 ALICE/ASH 代码对 Hf(n,p)Lu、Hf(n,p)Lu、Ta(n,p)Hf、W(n,p)Ta、W(n,p)Ta、W(n,p)Ta 和 W(n,p)Ta 反应进行了截面计算,以确定各种能级密度模型和预平衡模型对激发函数的影响。此外,我们还在 14.5 MeV 下使用不同的经验系统展示了我们的计算结果。目前的结果还与 TENDL-2019 和 JEFF-3.3 实验和评估核截面数据进行了比较。