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    Online-Ressource
    Online-Ressource
    Hindawi Limited ; 2019
    In:  Advances in Civil Engineering Vol. 2019 ( 2019-10-20), p. 1-12
    In: Advances in Civil Engineering, Hindawi Limited, Vol. 2019 ( 2019-10-20), p. 1-12
    Kurzfassung: This work is aimed to study the possibility of recycling plastic waste (polypropylene (PP)) as aggregate instead of sand in the manufacturing of mortar or concrete. For this, an experimental study was carried out to evaluate the influence of nano-SiO 2 and recycled PP plastic particles' content on physical, mechanical, and shrinkage properties and microstructure of the mortars with recycled PP plastic particles. The sand is substituted with the recycled PP plastic particles at dosages (0%, 20%, 40%, and 60% by volume of the sand). The nano-SiO 2 content is 5% by weight of cement. The physical (porosity, water absorption, and density), mechanical (compressive and flexural strength) and shrinkage properties of the mortars were evaluated, and a complementary study on microstructure of the interface between cementitious matrix and PP plastic particles was made. The measurements of physical and mechanical properties showed that PP-filled mortar had lower density and better toughness (higher ratio of flexural strength to compressive strength). However, the compressive strength and flexural strength of PP-filled mortar is reduced, and the porosity, water absorption, autogenous shrinkage, and dry shrinkage increased as compared to normal cement mortar. The addition of nano-SiO 2 reduced the porosity, water absorption, and drying shrinkage of PP-filled mortar and effectively improved the mechanical properties, but increased its autogenous shrinkage. A microscopic study of the interfacial zone (plastic-binder) has shown that there is poor adhesion between PP plastic particles and cement paste. From this work, it is found that recycled PP plastic waste has a great potential to be a construction material. It can be used as partial replacement of natural aggregates instead.
    Materialart: Online-Ressource
    ISSN: 1687-8086 , 1687-8094
    Sprache: Englisch
    Verlag: Hindawi Limited
    Publikationsdatum: 2019
    ZDB Id: 2449760-5
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
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