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  • The study represents a multi-scale approach to strength of cement paste, which is the binder for all cementitious materials. Nowadays, working groups both of engineering mechanics and of material science aim at developing scientific models that are capable to predict macroscopic material strength of cementitious materials from knowledge on their composition and on their degree of hydration. In this context, it appears to be promising to start with experimental characterization techniques at the finest possible scales (which are nowadays nanometer scales), and to progressively upscale (homogenize) strength via intermediate micro- and meso-scales up to the macroscopic material scale.
  • The study represents a multi-scale approach to strength of cement paste, which is the binder for all cementitious materials. Nowadays, working groups both of engineering mechanics and of material science aim at developing scientific models that are capable to predict macroscopic material strength of cementitious materials from knowledge on their composition and on their degree of hydration. In this context, it appears to be promising to start with experimental characterization techniques at the finest possible scales (which are nowadays nanometer scales), and to progressively upscale (homogenize) strength via intermediate micro- and meso-scales up to the macroscopic material scale. (en)
Title
  • Characterization of cement pastes and the combination of macroscopic properties with microscopy properties
  • Characterization of cement pastes and the combination of macroscopic properties with microscopy properties (en)
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  • Characterization of cement pastes and the combination of macroscopic properties with microscopy properties
  • Characterization of cement pastes and the combination of macroscopic properties with microscopy properties (en)
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  • RIV/00216305:26310/12:PU101666!RIV13-MSM-26310___
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  • S
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  • 126806
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  • RIV/00216305:26310/12:PU101666
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  • cement paste, calorimetry testing, ultrasonic testing, uniaxial compression testing, nanoindentation testing, correlative microscopy (en)
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  • [11D162B5DB7B]
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  • Brno
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  • Brno
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  • Studentská konference Chemie je život 2012
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  • Wasserbauer, Jaromír
  • Zmrzlý, Martin
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  • Vysoké učení technické v Brně. Fakulta chemická
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  • 978-80-214-4644-1
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  • 26310
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