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Bibliografia publikacji pracowników
Państwowej Szkoły Wyższej w Białej Podlaskiej

Baza tworzona przez Bibliotekę Akademii Bialskiej im. Jana Pawła II.



Zapytanie: MINERAL-ASPHALT MIXTURES
Liczba odnalezionych rekordów: 2



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1/2
Nr opisu: 0000040017
Autorzy: Wojciech Andrzejuk, Andrzej Szewczak, Stanisław Bogdan Fic, Grzegorz Łagód.
Tytuł pracy: Wettability of Asphalt Concrete with Natural and Recycled Aggregates from Sanitary Ceramics
Tytuł czasopisma:
Szczegóły: 2020, Vol. 13, issue 17, article number 3799
p-ISSN: 1996-1944

Charakterystyka formalna: artykuł w czasopiśmie zagranicznym
Charakterystyka merytoryczna: artykuł oryginalny naukowy
Charakterystyka wg MNiSW: artykuł w czasopiśmie z IF (wykaz MEiN)
Język publikacji: ENG
Wskaźnik Impact Factor ISI: 3.623
Punktacja ministerstwa: 140.000
Słowa kluczowe ang.: aggregate from sanitary ceramic wastes ; mineral-asphalt mixtures ; surface free energy ; wettability ; porosity
https://www.mdpi.com/1996-1944/13/17/3799
DOI: 10.3390/ma13173799
Streszczenie: In line with the current trend of seeking alternative methods for modification of the existing building composites, such as mineral-asphalt mixtures (MAMs), the materials from concrete and ceramics recycling are being used in increasingly wider applications. When added to MAMs as an aggregate, ceramic building material, which has different properties than the raw material (clay), may significantly influence the aggregate properties, including the wettability, porosity, asphalt adhesion, and consequently the mixture durability. The material's microstructure was found using SEM. The wetting properties of mineral-asphalt mixtures were determined by measuring the contact angles (CA) of their surfaces, using water as the measuring liquid. The total surface free energy (SFE) values were determined using the Neumann method. When analyzing the research results, it can be noticed that the chemical composition of the ceramic aggregate has a significant influence on the adhesion of asphalt to its surface due to the chemical affinity. Waste ceramic aggregate, despite its acidic pH value being connected with its elevated silica content, exhibits good adhesive properties.

2/2
Nr opisu: 0000035842
Autorzy: Wojciech Andrzejuk, Danuta Grażyna Barnat-Hunek, Rafat Siddique, Bartosz Marek Zegardło, Grzegorz Łagód.
Tytuł pracy: Application of Recycled Ceramic Aggregates for the Production of Mineral-Asphalt Mixtures
Tytuł czasopisma:
Szczegóły: 2018, Vol. 11, issue 5, article number 658
p-ISSN: 1996-1944

Charakterystyka formalna: artykuł w czasopiśmie zagranicznym
Charakterystyka merytoryczna: artykuł oryginalny naukowy
Charakterystyka wg MNiSW: artykuł w czasopiśmie z IF (wykaz MEiN)
Język publikacji: ENG
Wskaźnik Impact Factor ISI: 2.972
Punktacja ministerstwa: 35.000
Praca recenzowana
Słowa kluczowe ang.: mineral-asphalt mixtures ; aggregate from sanitary ceramic wastes ; environmentally friendly construction materials
Inne bazy podające opis:
  • WoS
  • Scopus

    http://www.mdpi.com/1996-1944/11/5/658
    DOI: 10.3390/ma11050658
    Streszczenie: This paper describes a method of designing and producing innovative mineral-asphalt mixtures, which utilize waste aggregate from the recycling of sanitary ceramics. The work presents the basic properties of the ceramic material, the investigation concerning the microstructure of the aggregate obtained from the grinding of waste, and a comparison with the images obtained for the aggregates usually employed in mineral-asphalt mixtures. The mixtures were designed for the application in the wearing course. Four series of mixtures were prepared. In the first and second, the ceramic aggregate constituted a partial substitute for dolomite, whereas in the third, we substituted granodiorite, and the fourth series contained only dolomite. The mixtures were examined for the content of soluble binder, the bulk density of samples, the presence of voids, the space filled with binder, and the susceptibility to water and frost corrosion. The obtained results were compared with the standard requirements. The microstructure as well as the contact zone in the considered mineral-asphalt mixtures are presented based on research conducted by means of a scanning electron microscope (SEM).
    Projekt/grant: : działalność statutowa WNET PSW, 2017-WNET/KNT/ZB/1

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