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  • Little research was done to investigate possible utilization of the irradiated materials after the end of their lifetime despite the growing potential of modification by irradiation. This research paper deals with usage of this recycled material as filler into non -recycled one. A powder of recycled irradiated high -density polyethylene was used as filler into non - irradiated powder or granules of low - density polyethylene. Two types of compounds were prepared – each with the same concentrations. These were from 0 % to 60 %. NotchedCharpy impact test was performed at ambient conditions and influence of this filler was tested. Two parameters were observed – Maximum Force (force needed for breakage of the material) and Impact Toughness (describing impact behavior of the material). Measured results show minimum influence on Maximum Force – it varied around 280 N. Results of Impact Toughness are much more consistent because all two compounds show similar tre nd. In all cases was this trend decreasing – the higher filling level the lower Impact Toughness. These findings are showing the way of possible re-use of irradiated materials.
  • Little research was done to investigate possible utilization of the irradiated materials after the end of their lifetime despite the growing potential of modification by irradiation. This research paper deals with usage of this recycled material as filler into non -recycled one. A powder of recycled irradiated high -density polyethylene was used as filler into non - irradiated powder or granules of low - density polyethylene. Two types of compounds were prepared – each with the same concentrations. These were from 0 % to 60 %. NotchedCharpy impact test was performed at ambient conditions and influence of this filler was tested. Two parameters were observed – Maximum Force (force needed for breakage of the material) and Impact Toughness (describing impact behavior of the material). Measured results show minimum influence on Maximum Force – it varied around 280 N. Results of Impact Toughness are much more consistent because all two compounds show similar tre nd. In all cases was this trend decreasing – the higher filling level the lower Impact Toughness. These findings are showing the way of possible re-use of irradiated materials. (en)
Title
  • Recyclation of Irradiated HDPE - Influence on Impact Toughness
  • Recyclation of Irradiated HDPE - Influence on Impact Toughness (en)
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  • Recyclation of Irradiated HDPE - Influence on Impact Toughness
  • Recyclation of Irradiated HDPE - Influence on Impact Toughness (en)
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  • RIV/70883521:28110/13:43869955!RIV14-MSM-28110___
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  • P(ED2.1.00/03.0089), S
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  • 101801
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  • RIV/70883521:28110/13:43869955
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  • Radiation Crosslinking, Charpy Impact Test , Recyclation , HDPE, LDPE (en)
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  • [A68EF0A53B8F]
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  • Valencie
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  • Atény
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  • Recent, Advances in Automatic Control, Information and Communications 14th International Conference on Automation and Information (ICAI´13) 13th International Conference on Applied Informatics and Communications (AIC´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 World Science and Engineering Academy and Science
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  • 978-960-474-316-2
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  • 28110
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