Počet záznamů: 1  

Modelling of interfacial transition zone effect on resistance to crack propagation in fine-grained cement-based composites

  1. 1.
    SYSNO ASEP0481493
    Druh ASEPJ - Článek v odborném periodiku
    Zařazení RIVJ - Článek v odborném periodiku
    Poddruh JČlánek ve WOS
    NázevModelling of interfacial transition zone effect on resistance to crack propagation in fine-grained cement-based composites
    Tvůrce(i) Šimonová, H. (CZ)
    Vyhlídal, M. (CZ)
    Kucharczyková, B. (CZ)
    Bayer, P. (CZ)
    Keršner, Z. (CZ)
    Malíková, Lucie (UFM-A) ORCID
    Klusák, Jan (UFM-A) RID, ORCID
    Celkový počet autorů7
    Zdroj.dok.Frattura ed Integrita Strutturale. - : Gruppo Italiano Frattura - ISSN 1971-8993
    Roč. 11, č. 41 (2017), s. 211-219
    Poč.str.9 s.
    Jazyk dok.eng - angličtina
    Země vyd.IT - Itálie
    Klíč. slovaEffective fracture toughness ; Fine-grained concrete ; Interfacial transition zone ; Three-point bending fracture test ; Scanning electron microscopy
    Vědní obor RIVJL - Únava materiálu a lomová mechanika
    Obor OECDAudio engineering, reliability analysis
    CEPGA16-18702S GA ČR - Grantová agentura ČR
    Institucionální podporaUFM-A - RVO:68081723
    UT WOS000423951800029
    EID SCOPUS85022083357
    DOI10.3221/IGF-ESIS.41.29
    AnotaceIn this paper, the attention is paid to investigation of the importance of the interfacial transition zone (ITZ) in selected fine-grained cement-based composites for the global fracture behaviour. This is a region of cement paste around the aggregate particles which specific features could have significant impact on the final behaviour of cement composites with a crack tip nearby this interface under applied tension. The aim of this work is to show the basic interface microstructure by scanning electron microscopy (SEM) done by MIRA3 TESCAN and to analyse the behaviour of such composite by numerical modelling. Numerical studies assume two different ITZ thicknesses taken from SEM analysis. A simplified cracked geometry (consisting of three phases – matrix, ITZ, and aggregate) is modelled by means of the finite element method with a crack terminating at the matrix–ITZ interface. ITZ's modulus of elasticity is taken from generalized self-consistent scheme. A few conclusions are discussed based on comparison of the average values of the opening stress ahead of the crack tip with their critical values. The analyses dealing with the effect of ITZ's properties on the stress distribution should contribute to better description of toughening mechanisms in silicate-based composites
    PracovištěÚstav fyziky materiálu
    KontaktYvonna Šrámková, sramkova@ipm.cz, Tel.: 532 290 485
    Rok sběru2018
Počet záznamů: 1  

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