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  • Thermal conductivity is the key property for thermal insulation applications. The thermal conductivity of ceramics can be significantly reduced by porosity, whereas the influence of grain size is usually much weaker, except for truly nanocrystalline ceramics. This chapter deals with the thermal conductivity of ceramics and ceramic composites, its temperature dependence and its dependence on composition (in the case of composites), porosity and grain size.
  • Thermal conductivity is the key property for thermal insulation applications. The thermal conductivity of ceramics can be significantly reduced by porosity, whereas the influence of grain size is usually much weaker, except for truly nanocrystalline ceramics. This chapter deals with the thermal conductivity of ceramics and ceramic composites, its temperature dependence and its dependence on composition (in the case of composites), porosity and grain size. (en)
Title
  • Thermal conductivity of ceramics - from monolithic to multiphase, from dense to porous, from micro to nano
  • Thermal conductivity of ceramics - from monolithic to multiphase, from dense to porous, from micro to nano (en)
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  • Thermal conductivity of ceramics - from monolithic to multiphase, from dense to porous, from micro to nano
  • Thermal conductivity of ceramics - from monolithic to multiphase, from dense to porous, from micro to nano (en)
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  • RIV/60461373:22310/11:43891540!RIV12-MSM-22310___
http://linked.open...avai/riv/aktivita
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  • P(IAA401250703), Z(MSM6046137302)
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  • 235151
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  • RIV/60461373:22310/11:43891540
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  • grain size; porosity; ceramics (oxide, non-oxide, silicate); Thermal conductivity (en)
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  • [B1FE25A8CD57]
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  • New York
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  • 7
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  • Advances in Materials Science Research - Volume 7
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  • Pabst, Willi
  • Hostaša, Jan
http://linked.open...n/vavai/riv/zamer
number of pages
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  • Nova Science Publishers
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  • 978-1-61209-821-0
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  • 22310
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