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  • This paper deals with computational simulation of uniaxial tension and bend test of composites with rubber matrix and steel fibers. Angles between fibers and direct axis are various. Both structural model and homogenized model were used. Advantage of homogenized model is much simpler geometry, because steel fibers are not modelled. Thus, the number of elements is low order, and of course computational time is low order too. Results obtained by structural models were compared with results obtained by homogenized models.
  • This paper deals with computational simulation of uniaxial tension and bend test of composites with rubber matrix and steel fibers. Angles between fibers and direct axis are various. Both structural model and homogenized model were used. Advantage of homogenized model is much simpler geometry, because steel fibers are not modelled. Thus, the number of elements is low order, and of course computational time is low order too. Results obtained by structural models were compared with results obtained by homogenized models. (en)
Title
  • Computational modelling of composite of rubber-steel fiber
  • Computational modelling of composite of rubber-steel fiber (en)
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  • Computational modelling of composite of rubber-steel fiber
  • Computational modelling of composite of rubber-steel fiber (en)
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  • RIV/00216305:26210/08:PU77428!RIV10-MSM-26210___
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  • 360875
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  • RIV/00216305:26210/08:PU77428
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  • hyperelasticity, homogenization, anisotropic, composite material, constitutive model (en)
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  • Lasota, Tomáš
  • Jarý, Milan
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  • Západočeská univerzita v Plzni
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  • 978-80-7043-712-4
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  • 26210
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