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  • The thermal conductivity of two different types of carbon fiber reinforced cement composites is measured in the dependence on thermal load, tensile load and their combinations resulting in the significant changes in the porosity of the materials. It is found that a more homogeneous pore structure results in a relative increase of the effect of air voids in the material on its heat transport properties and a decrease in thermal conductivity while a presence of significantly bigger pores can lead to the formation of thermal bridges in the pore structure accompanied by an increase in thermal conductivity
  • The thermal conductivity of two different types of carbon fiber reinforced cement composites is measured in the dependence on thermal load, tensile load and their combinations resulting in the significant changes in the porosity of the materials. It is found that a more homogeneous pore structure results in a relative increase of the effect of air voids in the material on its heat transport properties and a decrease in thermal conductivity while a presence of significantly bigger pores can lead to the formation of thermal bridges in the pore structure accompanied by an increase in thermal conductivity (en)
  • V článku jsou prezentovány výsledky zkoumání vlivu tepelného, mechanického namáhání a jejich kombinace na tepelné charakteristiky dvou druhů cementových kompozitů vyztužených uhlíkovými vlákny (cs)
Title
  • Thermal Properties of Cementitious Composites after Thermal Load
  • Thermal Properties of Cementitious Composites after Thermal Load (en)
  • Tepelné vlastnosti cementových kompozitů zatížených tepelným namáháním (cs)
skos:prefLabel
  • Thermal Properties of Cementitious Composites after Thermal Load
  • Thermal Properties of Cementitious Composites after Thermal Load (en)
  • Tepelné vlastnosti cementových kompozitů zatížených tepelným namáháním (cs)
skos:notation
  • RIV/68407700:21110/06:01121139!RIV07-GA0-21110___
http://linked.open.../vavai/riv/strany
  • 268 ; 273
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  • P(GA103/04/0139)
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  • 503759
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  • RIV/68407700:21110/06:01121139
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  • glass fiber reinforced cement composites; thermal conductivity; thermal properties (en)
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  • [6737DED8413B]
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  • Račkova dolina
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  • Bratislava
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  • Proceedings of International Workshop: Physical and Material Engineering 2006
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  • Toman, Jan
  • Mňahončáková, Eva
  • Vejmelka, Roman
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number of pages
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  • Slovenská technická univerzita v Bratislave
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  • 80-227-2467-X
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  • 21110
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