The Effect of Weathering and Biological Exposure on the Tensile Properties of Nonwoven Geotextile

Article Preview

Abstract:

This paper deals with the effect of weathering and biological exposure on the tensile properties of needle-punched PP nonwoven fabric. In the experiment, samples of the geotextile were exposed to the above factors for different time, and then their tensile strength was determined. The obtained results showed the significant drop in the tensile strength after the exposure to UV radiation and slight drop after soil burial test.

You might also be interested in these eBooks

Info:

Periodical:

Pages:

636-641

Citation:

Online since:

January 2015

Export:

Price:

Permissions CCC:

Permissions PLS:

Сopyright:

© 2015 Trans Tech Publications Ltd. All Rights Reserved

Share:

Citation:

* - Corresponding Author

[1] Stolyarov, O., Gorshkov, A. Primenenie vysokoprochnyh tekstil'nyh materialov v strotel'stve [Application of textile high-strength materials in constructions] (2009) Magazine of Civil Engineering, (4), pp.21-25. (rus).

Google Scholar

[2] Horrocks, A.R., Anand, S.C. Handbook of Technical Textiles (2000) Woodhead Publishing Ltd, Cambridge, 576 p.

Google Scholar

[3] Usmanov, R., Mrdak, I., Vatin, N., Murgul, V. Reinforced soil beds on weak soils (2014) Applied Mechanics and Materials, 633-634, pp.932-935.

DOI: 10.4028/www.scientific.net/amm.633-634.932

Google Scholar

[4] Usmanov, R., Vatin, N., Murgul, V. Experimental research of a highly compacted soil beds (2014) Applied Mechanics and Materials, 633-634, pp.1082-1085.

DOI: 10.4028/www.scientific.net/amm.633-634.1082

Google Scholar

[5] Usmanov, R., Vatin, N., Murgul, V. Highly compacted and reinforced soil beds as an efficient method to build artificial foundation based on weak soils (2014) Applied Mechanics and Materials, 680, pp.474-480.

DOI: 10.4028/www.scientific.net/amm.680.474

Google Scholar

[6] Shchemelinin, L., Utin, A., Belyaev, N., Lebedev, V., Nudner, I., Semenov, K. Experimental Studies Regarding the Efficiency of Seabed Soil Protection near Offshore Structures (2014).

Google Scholar

[7] Ustyan, N. Geokontejnery v dorozhnom i gidrotehnicheskom stroitel'stve [Geocontainers in road building and hydraulic engineering construction] (2011) Magazine of Civil Engineering, (4), pp.22-25. (rus).

DOI: 10.5862/mce.22.3

Google Scholar

[8] Shherbina, E. Geosinteticheskie materialy v stroitel'stve [Geosynthetics in construction] (2004) Izdatel'stvo Associacija stroitel'nyh vuzov, 111 p. (rus).

Google Scholar

[9] Rod'kin, A. Geosinteticheskie materialy dlja dorozhnogo stroitel'stva [Geosynthetics for road construction] (2000) Stroitel'nye materialy, 12, pp.24-28. (rus).

Google Scholar

[10] Robert M. Koerner. Designing with Geosynthetics ˗ 6th Edition Volume 1 (2012) 524 p.

Google Scholar

[11] Sanjay Kumar Shukla Handbook of Geosynthetic Engineering (2011) 2nd edition, 424 p.

Google Scholar

[12] Skutin, A., Smerdov, M., Smerdov, D. Issledovanie naprjazhenno-deformirovannogo sostojanija zemljanogo polotna, usilennogo geosinteticheskimi materialami [Analysis of stress-strain benavior of subgrade, reinforced by geosynthetics materials] (2012).

Google Scholar

[13] Krasheninin, E. Razvitie konstruktivno-tehnologicheskih reshenij dlja prodlenija sroka sluzhby asfal'tobetonnyh pokrytij, armirovannyh geosinteticheskimi materialami [Development of design and technological solutions for renewal of working life of asphalt coat reinforced with geosynthetics] (2009).

Google Scholar

[14] Andrianova, M., Rodionov, M., Suhorukova, N., Shabanova, A. Zashhita pochvenno-rastitel'nogo pokrova rekreacionnyh ob'ektov. Novaja konstrukcija dorozhno-tropinochnoj seti s ispol'zovaniem geosintetikov [A new construction of a path network using geosynthetics to protect the topsoil and the vegetation of recreation areas] (2010).

Google Scholar

[15] Mwasha, A. Using environmentally friendly geotextiles for soil reinforcement: A parametric study (2009) Materials and Design, 5 (30), pp.1798-1803.

DOI: 10.1016/j.matdes.2008.07.018

Google Scholar

[16] Ovcharov, A., Zolotozubov, D., Opredelenija prochnostnyh harakteristik geosinteticheskih materialov [Determination of the mechanical strength characteristics of geosynthetics] (2011).

Google Scholar

[17] Ovcharov, A., Zolotozubov, D., Ispytanija geosinteticheskih materialov po prochnosti na razryv dlja optimal'nogo proektirovanija armirovannyh osnovanij [The tensile tests of geosynthetic materials for optimum designing of the reinforced bases] (2012).

Google Scholar

[18] GOST R 55028-2012. Dorogi avtomobil'nye obshhego pol'zovanija. Materialy geosinteticheskie dlja dorozhnogo stroitel'stva. Klassifikacija, terminy i opredelenija [Public roads and highways. Geosynthetics for road construction. Classification, terms and definitions] (2013).

Google Scholar

[19] GOST R 55030-2012. Dorogi avtomobil'nye obshhego pol'zovanija. Materialy geosinteticheskie dlja dorozhnogo stroitel'stva. Metod opredelenija prochnosti pri rastjazhenii [Public roads and highways. Geosynthetics for road construction. Test method for tensile strength] (2013).

Google Scholar

[20] GOST R 55031-2012. Dorogi avtomobil'nye obshhego pol'zovanija. Materialy geosinteticheskie dlja dorozhnogo stroitel'stva. Metod opredelenija ustojchivosti k ul'trafioletovomu izlucheniju [Public roads and highways. Geosynthetics for road construction. Test method for determination of stability to ultra-violet radiation] (2013).

Google Scholar

[21] ODM 218. 2. 047-2014. Metodika ocenki dolgovechnosti geosinteticheskih materialov, ispol'zuemyh v dorozhnom stroitel'stve [Methodology for evaluate the durability of geosynthetics for road construction] (2014) 69 p. (rus).

Google Scholar

[22] SNP 23-01-99. Stroitel'naja klimatologija [Building climatology] (2000). (rus).

Google Scholar

[23] Harakteristika klimata Sankt-Peterburga [Characteristic of the climate of St. Petersburg] URL: http: /www. infoeco. ru/index. php?id=1091 (Date of request: 11. 10. 2014). (rus).

Google Scholar

[24] EN 12225: 2000. Geotextiles and geotextile-related products – Method for determining the microbiological resistance by a soil burial test (2009).

DOI: 10.3403/00970544

Google Scholar