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Description
  • The present paper describes experimental and numerical work for the evaluation of the selected e_ective mechanical and transport material properties of polysiloxane matrix based composites. Three di_erent material systems including carbon, basalt and glass plane weave textile reinforcements are first studied experimentally with emphases on the inuence of processing temperature, number of reinforcement layers and the resulting porosity. The Mori-Tanaka averaging scheme is then selected for the numerical evaluation of efective electric conductivities adopting the standard bottom-up hierarchical homogenization.
  • The present paper describes experimental and numerical work for the evaluation of the selected e_ective mechanical and transport material properties of polysiloxane matrix based composites. Three di_erent material systems including carbon, basalt and glass plane weave textile reinforcements are first studied experimentally with emphases on the inuence of processing temperature, number of reinforcement layers and the resulting porosity. The Mori-Tanaka averaging scheme is then selected for the numerical evaluation of efective electric conductivities adopting the standard bottom-up hierarchical homogenization. (en)
Title
  • Efective mechanical and transport properties of polysiloxane matrix based composites
  • Efective mechanical and transport properties of polysiloxane matrix based composites (en)
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  • Efective mechanical and transport properties of polysiloxane matrix based composites
  • Efective mechanical and transport properties of polysiloxane matrix based composites (en)
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  • RIV/46747885:24410/12:#0001281!RIV13-GA0-24410___
http://linked.open...avai/riv/aktivita
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  • P(GAP105/11/0224)
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  • 132863
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  • RIV/46747885:24410/12:#0001281
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  • Homogenization; Ceramic textile composites; Charpy test; Falling test; Electric conductivity; Porosity; Mori-Tanaka method (en)
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  • [C90035E7F863]
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  • New Forest
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  • Southampton
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  • High Performance Structures and Materials VI
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  • Maršálková, Miroslava
  • Šejnoha, Michal
  • Urbanová, Soňa
  • Salačová, Jana
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issn
  • 1743-3509
number of pages
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  • 10.2495/HPSM120161
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  • WITPress
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  • 978-1-84564-596-0
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  • 24410
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