研究目的
To design new lead-free materials for radiation shielding by exploring the physical properties of bismuth-barium borate glasses and comparing them to traditional materials used in nuclear reactor design.
研究成果
The bismuth-barium borate glass system shows promising properties for radiation shielding, with comparable performance to traditional materials. The genetic algorithm proved effective in optimizing glass compositions for multi-objective radiation shielding applications.
研究不足
The study is limited to the composition range of 50Bi2O3-(50-x)B2O3-xBaO with 25>x>5 wt.%. The thermal stability and radiation shielding properties are compared to traditional materials, but practical applications may require further testing.
1:Experimental Design and Method Selection:
The genetic algorithm was used to identify optimal glass compositions. Spectroscopic and thermal analysis were employed to explore the glass structure.
2:Sample Selection and Data Sources:
Glasses were prepared with AR grade reagents, Bi2O3, BaO, B2O3. The density was measured using Archimedes’ principle. X-ray diffraction confirmed the amorphous nature.
3:The density was measured using Archimedes’ principle. X-ray diffraction confirmed the amorphous nature.
List of Experimental Equipment and Materials:
3. List of Experimental Equipment and Materials: PANalytical XPERT-PRO for X-ray diffraction, SETRAM instruments systems Ev 1750 for DSC, QE65 pro spectrometer for Raman spectra, Burker Vector 22 spectrometer for FTIR-ATR spectra.
4:Experimental Procedures and Operational Workflow:
Batches of 10g mixtures were melted in alumina crucibles at 1100 oC, quenched on graphite mould, and annealed. Samples were ground and polished for analysis.
5:Data Analysis Methods:
The optical bandgap was calculated from Tauc plots. The HVL and neutron removal cross-section were calculated using standard equations.
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