某些铝合金的质量衰减系数、有效原子序数和电子密度的评定

G. B. Cengiz, I. Caglar
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引用次数: 2

摘要

铝合金由于其优异的机械性能、高的导电性和导热性、优异的耐腐蚀性、良好的可焊性、良好的成形性以及类似的性能,在当今的技术中有许多应用领域。本文研究了四种不同类型的市售铝合金的质量衰减系数(µm)、有效原子序数(Zeff)和有效电子密度(Ne)。为此,采用NaI(Tl)伽玛能谱法测定了5083、5754、6061和6082编码铝合金的µm、Zeff和Ne值,其伽玛能谱值分别为661.66、1173.23和1332.48 keV,分别来自137Cs和60Co放射源。并利用PhyX-PSD计算机程序在1 kv - 1 GeV光子能量下对这些参数进行了理论计算,并与实验结果进行了比较。图中给出了µm、Zeff和Ne随入射光子能量的变化。结果表明,合金样品的µm、Zeff和Ne值与入射光子能量和合金元素组成有关。此外,从理论和实验结果观察到,所研究的铝合金具有几乎相同的伽马射线衰减能力。
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Assessment of Mass Attenuation Coefficient, Effective Atomic Number and Electron Density of Some Aluminum Alloys
Aluminum alloys have numerous application fields in today's technology due to their excellent mechanical features, high electrical and thermal conductivity, magnificent corrosion resistance, good weldability, good formability and similar properties. In the present study, we investigated the mass attenuation coefficient (µm), effective atomic number (Zeff) and effective electron density (Ne) of four different type commercially available aluminum alloys. For his purpose, µm, Zeff, and Ne values of 5083, 5754, 6061 and 6082 coded aluminum alloys were determined by employing NaI(Tl) gamma ray spectrometry at 661.66,1173.23 and 1332.48 keV gamma ray energies obtained from 137Cs and 60Co radioactive sources. Also these parameters theoretically determined using PhyX-PSD computer program at the photon energies of 1 keV–1 GeV and compared with the experimental results. The variation of µm, Zeff, and Ne with incident photon energy presented graphically. From the obtained results it might be concluded that the µm, Zeff, and Ne values for studied alloy samples depend on the incident photon energy and elemental composition of alloys. In addition, it was observed from the theoretical and experimental results that aluminum alloys under study have almost the same gamma ray attenuation capacity.
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