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  • The pull-out response of a short fiber from the matrix depends on both the bond between the two materials and the geometry of the fiber. Fibers placed and oriented randomly in 3D space bridge matrix cracks with a certain inclination angle and embedded length distribution, respectively. With a pull-out law available in analytical form, the mean asymptotic per fiber force-crack opening diagram can be obtained for a uniformly loaded crack bridge in a short fiber reinforced composite by integrating the response of a single fiber multiplied by the joint probability density function of the random variables (e.g. position and inclination angle of the fiber). In order to obtain a crack-bridge force, random contributions of all the individual fibers bridging a crack have to be summed. In this paper, the distribution of fibers randomly intersecting a crack plane is introduced and the statistical evaluation of the random contribution of one fiber is evaluated. This information is utilized to probabilistically ev
  • The pull-out response of a short fiber from the matrix depends on both the bond between the two materials and the geometry of the fiber. Fibers placed and oriented randomly in 3D space bridge matrix cracks with a certain inclination angle and embedded length distribution, respectively. With a pull-out law available in analytical form, the mean asymptotic per fiber force-crack opening diagram can be obtained for a uniformly loaded crack bridge in a short fiber reinforced composite by integrating the response of a single fiber multiplied by the joint probability density function of the random variables (e.g. position and inclination angle of the fiber). In order to obtain a crack-bridge force, random contributions of all the individual fibers bridging a crack have to be summed. In this paper, the distribution of fibers randomly intersecting a crack plane is introduced and the statistical evaluation of the random contribution of one fiber is evaluated. This information is utilized to probabilistically ev (en)
Title
  • Probabilistic modeling of short fiber reinforced composites: asymptotic evaluation of a crack bridge performance
  • Probabilistic modeling of short fiber reinforced composites: asymptotic evaluation of a crack bridge performance (en)
skos:prefLabel
  • Probabilistic modeling of short fiber reinforced composites: asymptotic evaluation of a crack bridge performance
  • Probabilistic modeling of short fiber reinforced composites: asymptotic evaluation of a crack bridge performance (en)
skos:notation
  • RIV/00216305:26110/11:PU96318!RIV12-GA0-26110___
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  • P(GCP105/10/J028), P(GD103/09/H085)
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  • 223823
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  • RIV/00216305:26110/11:PU96318
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  • binomial distribution, conditional probability, ECC, statistics, random sum of random variables (en)
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  • [68AC89C96E56]
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  • Kraków
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  • Krakow, Polsko
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  • 7th International Conference Analytical Models and New Concepts in Concrete and Masonry Structures
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  • Sadílek, Václav
  • Vořechovský, Miroslav
  • Rypl, Rostislav
  • Hegger, Josef
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http://linked.open.../riv/zahajeniAkce
number of pages
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  • Neuveden
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  • 978-83-7242-603-1
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  • 26110
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