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  • Although irradiation of plastics is a well-recognized modification, little research has been undertaken on the possible re-use of such modified materials. In this research paper their possible utilization as fillers into non-irradiated materials is investigated. A powder of recycled irradiated high-density polyethylene (HDPE) was used as filler and granules of non-irradiated neat low-density polyethylene (LDPE) were used as a polymer matrix. Both materials were mixed together in seven concentrations (from 0 % to 60 % of the filler) and test specimens were prepared from the resulting compound by an injection molding technology. Tensile test at two temperatures (ambient – 23 °C and elevated – 80 °C ) was performed and influence of the filler on strength and toughness was observed. According to measured results there is significant growth of both, strength (up to 41 %) and toughness (up to 85 %), similar trend is observed at elevated temperature as well. These findings indicate that it is possible to re-use irradiated polymer material after the end of its service life, while taking advantage of the improvement in the resulting mechanical properties
  • Although irradiation of plastics is a well-recognized modification, little research has been undertaken on the possible re-use of such modified materials. In this research paper their possible utilization as fillers into non-irradiated materials is investigated. A powder of recycled irradiated high-density polyethylene (HDPE) was used as filler and granules of non-irradiated neat low-density polyethylene (LDPE) were used as a polymer matrix. Both materials were mixed together in seven concentrations (from 0 % to 60 % of the filler) and test specimens were prepared from the resulting compound by an injection molding technology. Tensile test at two temperatures (ambient – 23 °C and elevated – 80 °C ) was performed and influence of the filler on strength and toughness was observed. According to measured results there is significant growth of both, strength (up to 41 %) and toughness (up to 85 %), similar trend is observed at elevated temperature as well. These findings indicate that it is possible to re-use irradiated polymer material after the end of its service life, while taking advantage of the improvement in the resulting mechanical properties (en)
Title
  • Recyclation of Irradiated HDPE - Influence on Tensile Toughness
  • Recyclation of Irradiated HDPE - Influence on Tensile Toughness (en)
skos:prefLabel
  • Recyclation of Irradiated HDPE - Influence on Tensile Toughness
  • Recyclation of Irradiated HDPE - Influence on Tensile Toughness (en)
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  • RIV/70883521:28110/13:43869944!RIV14-MSM-28110___
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  • P(ED2.1.00/03.0089), S
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  • 101803
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  • RIV/70883521:28110/13:43869944
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  • Radiation Crosslinking, Tensile Test, Recyclation, HDPE, LDPE (en)
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  • [02A3A1C5C343]
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  • Recent Advances in Systems Science Proceedings of the 17th International Conference on Systems (part of CSCC´13)
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  • Maňas, David
  • Maňas, Miroslav
  • Navrátil, Jan
  • Staněk, Michal
  • Kyas, Kamil
  • Šenkeřík, Vojtěch
  • Škrobák, Adam
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issn
  • 1790-5117
number of pages
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  • WSEAS Press (GR)
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  • 978-960-474-314-8
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  • 28110
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