Search engine for discovering works of Art, research articles, and books related to Art and Culture
ShareThis
Javascript must be enabled to continue!

RADIATION SHIELDING PERFORMANCE OF DOUBLE-LAYERED TIN-PDMS AGAINST 661.7 KEV GAMMA RAYS

View through CrossRef
This study aims to investigate the ability of double-layered tin-PDMS composites to block gamma radiation at medium energy levels using Cs-137 (661.7 keV). Three composite series were fabricated, known as the PS, AS, and TM series, with different tin content and layer arrangements for observation purposes. Measurements are performed on two distinct irradiation surfaces of the series involving shielding parameters such as the linear attenuation coefficient (LAC), mass attenuation coefficient (MAC), radiation protection efficiency (RPE), half-value layer (HVL), and tenth-value layer (TVL). Analysis reveals that the irradiation surface has a substantial impact on the shielding performance of the material. The highest RPE value was recorded for the TM6 composite with the alloy irradiation surface at 22.052%, with a LAC of 0.996 cm⁻¹, MAC of 0.187 cm²/g, HVL of 0.696 cm, and TVL of 2.311 cm. The TM6 exhibits exceptional shielding properties, which prove its capability as a potential radiation shielding material for medium-energy gamma ray protection applications. On the other hand, the RPEs for pure lead and pure PDMS were 48.863 and 5.502 percent, respectively. According to the results, various double-layer tin-PDMS material compositions have good promise for attenuation, and the TM6 arrangement may be helpful as a lighter and safer substitute for traditional lead shielding.
Title: RADIATION SHIELDING PERFORMANCE OF DOUBLE-LAYERED TIN-PDMS AGAINST 661.7 KEV GAMMA RAYS
Description:
This study aims to investigate the ability of double-layered tin-PDMS composites to block gamma radiation at medium energy levels using Cs-137 (661.
7 keV).
Three composite series were fabricated, known as the PS, AS, and TM series, with different tin content and layer arrangements for observation purposes.
Measurements are performed on two distinct irradiation surfaces of the series involving shielding parameters such as the linear attenuation coefficient (LAC), mass attenuation coefficient (MAC), radiation protection efficiency (RPE), half-value layer (HVL), and tenth-value layer (TVL).
Analysis reveals that the irradiation surface has a substantial impact on the shielding performance of the material.
The highest RPE value was recorded for the TM6 composite with the alloy irradiation surface at 22.
052%, with a LAC of 0.
996 cm⁻¹, MAC of 0.
187 cm²/g, HVL of 0.
696 cm, and TVL of 2.
311 cm.
The TM6 exhibits exceptional shielding properties, which prove its capability as a potential radiation shielding material for medium-energy gamma ray protection applications.
On the other hand, the RPEs for pure lead and pure PDMS were 48.
863 and 5.
502 percent, respectively.
According to the results, various double-layer tin-PDMS material compositions have good promise for attenuation, and the TM6 arrangement may be helpful as a lighter and safer substitute for traditional lead shielding.

Related Results

On Proximal Relations in Transformation Semigroups Arising from Generalized Shifts
On Proximal Relations in Transformation Semigroups Arising from Generalized Shifts
For a finite discrete topological space $X$ with at least two elements, a nonempty set $\Gamma$, and a map $\varphi:\Gamma \to \Gamma$, $\sigma_{\varphi}:X^{\Gamma} \to X^{\Gamma}$...
RADIATION SHIELDING PROPERTIES OF TIN-POLYDIMETHYLSILOXANE (PDMS) COMPOSITES AGAINST GAMMA RAY AT 356 KEV
RADIATION SHIELDING PROPERTIES OF TIN-POLYDIMETHYLSILOXANE (PDMS) COMPOSITES AGAINST GAMMA RAY AT 356 KEV
Radiation shielding materials are essential for various applications, but conventional lead-based (Pb) shields pose environmental and health risks. This study investigates polydime...
North Syrian Mortaria and Other Late Roman Personal and Utility Objects Bearing Inscriptions of Good Luck
North Syrian Mortaria and Other Late Roman Personal and Utility Objects Bearing Inscriptions of Good Luck
<span style="font-size: 11pt; color: black; font-family: 'Times New Roman','serif'">&Pi;&Eta;&Lambda;&Iota;&Nu;&Alpha; &Iota;&Gamma;&Delta...
Porosity and Structural Integrity of Tin-Polydimethylsiloxane (PDMS) Composites for Radiation Shielding Application
Porosity and Structural Integrity of Tin-Polydimethylsiloxane (PDMS) Composites for Radiation Shielding Application
Ionizing radiation benefits medical treatments and diagnostics. However, it also poses significant health risks, such as from the scattering radiation and unintended exposure. Lead...
The gamma radiation shielding effectiveness of textured steel yarn based fabrics
The gamma radiation shielding effectiveness of textured steel yarn based fabrics
Lead aprons that are lead-shielding products are generally used for personal protection of physicians and patients from X-ray (gamma) radiation during medical operations; lead has ...
A Systematic Review on the Radiation Shielding Performance of Metal-Polymer Composites
A Systematic Review on the Radiation Shielding Performance of Metal-Polymer Composites
Radiation usage in various sectors necessitates effective shielding materials to protect workers from ionizing radiation hazards. While lead is commonly used, its application in pe...
Delayed gamma fraction determination in the zero power reactor CROCUS
Delayed gamma fraction determination in the zero power reactor CROCUS
Gamma rays are an inextricable part of a nuclear reactor’s radiation field, and as such require characterization for dose rate estimations required for the radiation protection of ...

Back to Top