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Development and study of lightweight recycled composite materials based on linear low-density polyethylene and W for radiation application

  • A. A. Rotkovich*
  • , D. I. Tishkevich
  • , I. U. Razanau
  • , T. N. Vershinina
  • , A. A. Bondaruk
  • , S. A. German
  • , T. I. Zubar
  • , M. I. Sayyed
  • , M. Dong
  • , Yuan Yao
  • , K. A. Mahmoud
  • , M. V. Silibin
  • , A. V. Trukhanov
  • *Corresponding author for this work
  • Belarus Academy of Sciences
  • Joint Institute for Nuclear Research
  • Dubna State University
  • University of Tabuk
  • Al-Isra Private University
  • Northeastern University China
  • Hong Kong Polytechnic University
  • School of Chemistry and Chemical Engineering, Harbin Institute of Technology
  • Ural Federal University
  • Nuclear Materials Authority
  • Sechenov First Moscow State Medical University

Research output: Contribution to journalArticlepeer-review

Abstract

Composite materials based on a polymer matrix of linear low-density polyethylene (LLDPE) and W were produced by thermal pressing. The content of W in the samples varied from 0 to 70 %. The recycling properties of LLDPE are demonstrated in this study, which significantly helped to reduce the defects. The microstructure of the composites consists of well-defined W grains covered by elastic LLDPE fibers. A homogeneous distribution of tungsten in the polymer matrix was observed for sample W70. The EDX analysis showed the presence of tungsten and carbon (from the polymer component). The XRD analysis confirms the increase in W content in the samples. The FTIR spectra of the composites showed an increase in the content of terminal methyl groups, a decrease in the molecular weight, and a decrease in the degree of crystallinity of the polyethylene matrix with an increase in the W content in the composite. The sample with 70 % W content has the highest effective density (2.61 g/cm3). The sample relative density ranges from 93.3 to 97.7 %. The porosity of LLDPE-W composites does not exceed 7 %. Gamma radiation shielding efficiency parameters such as LAC, HVL, and MFP were calculated using Phy-X/PSD. The radiation source was Co60, with an emission range of 0.8–2.5 MeV. As the gamma energy increases, it is observed that the values of all the parameters deteriorate. However, the sample with a maximum W content of 70 % has the best values of LAC, HVL, and MFP among the other samples.

Original languageEnglish
Pages (from-to)1310-1318
Number of pages9
JournalJournal of Materials Research and Technology
Volume30
DOIs
StatePublished - 1 May 2024
Externally publishedYes

Keywords

  • Gamma-ray
  • Polyethylene
  • Polymers
  • Pressing
  • Radiation shielding
  • Tungsten

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