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Structural, radiation shielding, thermal and dynamic mechanical analysis for waste rubber/EPDM rubber composite loaded with Fe 2 O 3 for green environment.

M M AbdelKaderM T Abou-LailaM S S El-DeebEman O TahaA S El-Deeb
Published in: Scientific reports (2024)
Increasing waste rubber recycling produces a specious range of products for many valuable applications. Waste Rubber/EPDM composite with different concentrations was prepared. Infrared spectroscopy (FTIR) is used to identify the chemical composition. A water absorption test, Dynamic mechanical analysis (DMA), and Thermal Gravimetric Analysis (TGA) were performed. The (75/25) WR/EPDM rubber composite exhibited the best behavior with the highest mechanical performance. Fe 2 O 3 was added to (75/25) WR/EPDM rubber composite. Water absorption, FTIR, TGA, and DMA were investigated. The composite performance was improved with increasing Fe 2 O 3 content. The linear attenuation coefficients (μ) were also measured as a function of the concentrations of Fe 2 O 3 for γ-ray energy 662 keV by using 137Cs point source; the radiation shielding can be denoted by numbers of parameters like mass attenuation coefficient (μm), half value layer (HVL), Tenth value layer TVL and radiation protection efficiency (RPE%), radiation protection efficiency increased as Fe 2 O 3 increased.
Keyphrases
  • heavy metals
  • radiation induced
  • drug delivery
  • radiation therapy
  • high resolution
  • cancer therapy