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Polyurethane Grouted Gravel Type Geomaterials—A Model Study on Relations Between Material Structure and Physical–Mechanical Properties

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    0442139 - ÚGN 2016 RIV US eng J - Článek v odborném periodiku
    Ščučka, Jiří - Martinec, Petr - Souček, Kamil
    Polyurethane Grouted Gravel Type Geomaterials—A Model Study on Relations Between Material Structure and Physical–Mechanical Properties.
    Geotechnical Testing Journal. Roč. 38, č. 2 (2015), s. 229-242. ISSN 0149-6115. E-ISSN 1945-7545
    Grant CEP: GA MŠMT ED2.1.00/03.0082; GA MŠMT(CZ) LO1406
    Institucionální podpora: RVO:68145535
    Klíčová slova: grouting * structural and textural parameters * physical and mechanical properties * composite materials * polyurethane
    Obor OECD: Materials engineering
    Impakt faktor: 0.663, rok: 2015
    http://www.astm.org/DIGITAL_LIBRARY/JOURNALS/GEOTECH/PAGES/GTJ20140100.htm

    New specific composite materials are formed in the field of grouting technologies by pressure grouting of polyurethane resins into soils, disturbed rocks, or into damaged building structures. The structural and textural variability of these geomaterial–polymer composites complicates significantly the determination of their physical and mechanical properties. Determination of mechanical parameters is particularly difficult because it is often impossible to prepare standard test specimens for laboratory loading tests from the samples taken after grouting in situ. Analysis of structures and textures of composites originating from geotechnical practice represents a possible indirect way to evaluate their physical and mechanical properties. The structure of a composite material can be compared with structures of similar composites whose physical and mechanical properties are already known. In this paper, results of a model study are presented. The aim of this study is to define basic relations between structural parameters and physical–mechanical properties of the model composites with a polyurethane matrix.
    Trvalý link: http://hdl.handle.net/11104/0245018

     
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