Influence of Structural Parameters of Nonwoven Geotextiles on Separation and Filtration in Road Construction

Author:

Bezgovšek Špela1,Gorjanc Dunja Šajn1,Pulko Boštjan2,Lenart Stanislav3

Affiliation:

1. Faculty of Natural Science and Engineering, Department of Textiles, Graphic Arts and Design , University of Ljubljana , Snezniska 5 , Ljubljana , Slovenia

2. Faculty of Civil and Geodetic Engineering , University of Ljubljana , Jamova 2 , Ljubljana , Slovenia

3. Slovenian National Building and Civil Engineering Institute , The Section for Geotechnics, Dimičeva ulica 12 , Ljubljana , Slovenia

Abstract

Abstract Nonwoven geotextiles are often used in road construction as a separation layer. They consist of the web of fibers with different orientations. The orientation of fibers has an important influence on physical and mechanical properties of nonwoven geotextiles. The production of nonwoven geotextiles is cheaper in comparison to woven or knitted fabrics which can also be used as separation geotextiles. The purpose of this research was to study the influence of structural properties of nonwoven geotextiles, namely the diameter of fibers and mass and thickness of nonwoven geotextiles, on their mechanical and hydraulic properties. Six types of nonwoven geotextiles were used in the research. They were produced by the drylaid process (carded) using mechanical bonding technique and also with the combination of mechanical and thermal bonding technique. The research confirmed that the bonding technique and structural properties significantly influence the separation and filtration properties of nonwoven geotextiles, such as opening size and water permeability. It was also found that there are no significant differences in mechanical properties, such as viscoelastic properties and compression creep, between the samples in the dry and wet conditions.

Publisher

Walter de Gruyter GmbH

Subject

General Materials Science

Reference26 articles.

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3. Smoltczyk, U. (2002). Geotechnical engineering handbook. Ernest and Sohn Procedures, Darmstadt, 1–81.

4. Olivo, T. (2016). Focus on geotextiles, producers of nonwoven geotextiles across the globe continue to invest in their technologies. Nonwovens Industry.

5. Rawal, A., Sayeed, M. M. A., Saraswat, H., Shah, T. (2013). A comparison of wide-width tensile strength to its axi-symmetric tensile strength of hybrid needlepunched nonwoven geotextiles. Geotextiles and Geomembranes, 36, 66–70.

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