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  • Particulate composite with soft polymer matrix and rigid mineral fillers are one of most frequently used construction and engineering materials. The main focus of a present paper is an estimation of the load influence on behavior of micro-crack placed in close proximity to the particle with interphase in soft matrix. The particulate composite with polymer matrix filled by magnesium-based mineral fillers is investigated by means of the finite element method. A non-linear material behavior of the matrix was considered. Numerical model on the base of representative plane element (RPE) was developed. The conclusions of this paper can contribute to a better understanding of the behavior of micro-crack in particulate composites with soft polymer matrix.
  • Particulate composite with soft polymer matrix and rigid mineral fillers are one of most frequently used construction and engineering materials. The main focus of a present paper is an estimation of the load influence on behavior of micro-crack placed in close proximity to the particle with interphase in soft matrix. The particulate composite with polymer matrix filled by magnesium-based mineral fillers is investigated by means of the finite element method. A non-linear material behavior of the matrix was considered. Numerical model on the base of representative plane element (RPE) was developed. The conclusions of this paper can contribute to a better understanding of the behavior of micro-crack in particulate composites with soft polymer matrix. (en)
Title
  • Load Influence on the Behavior of Micro-crack in the Particulate Composite
  • Load Influence on the Behavior of Micro-crack in the Particulate Composite (en)
skos:prefLabel
  • Load Influence on the Behavior of Micro-crack in the Particulate Composite
  • Load Influence on the Behavior of Micro-crack in the Particulate Composite (en)
skos:notation
  • RIV/00216305:26210/13:PU99284!RIV14-GA0-26210___
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  • P(GPP107/10/P503)
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  • 1
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  • 85225
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  • RIV/00216305:26210/13:PU99284
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  • polymer particulate composites, interphase, fracture mechanics, non-linear matrix, FEM, shielding effect (en)
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  • CH - Švýcarská konfederace
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  • [1A44AC403415]
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  • Key Engineering Materials (print)
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  • 525-526
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  • Majer, Zdeněk
issn
  • 1013-9826
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  • 26210
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