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Erschienen in: International Journal of Geosynthetics and Ground Engineering 3/2021

01.09.2021 | Original Paper

Laboratory Degradation of a Reinforcement PET-PP Geocomposite Under Accelerated Weathering Conditions

verfasst von: José Ricardo Carneiro, David Miranda Carlos, Maria de Lurdes Lopes

Erschienen in: International Journal of Geosynthetics and Ground Engineering | Ausgabe 3/2021

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Abstract

Like other polymeric materials, geosynthetics have a limited resistance to weathering. The exposure to solar radiation and other weathering agents (e.g. air, heat or moisture) can result in undesirable changes in their properties, affecting their performance and reducing their service life. The weathering resistance of geosynthetics can be evaluated by field or laboratory tests, under natural or artificial conditions, respectively. Field tests are usually time-consuming, with laboratory tests being an alternative to simulate (in a short period of time) outdoor weathering. This work evaluates the laboratory degradation of a PET-PP geocomposite [a polypropylene (PP) geotextile reinforced with polyethylene terephthalate (PET) filaments] under different accelerated weathering conditions. The artificial weathering tests were performed in a laboratory weatherometer [fluorescent ultraviolet (UV) lamps type] and included exposure of the geocomposite to UV radiation, water spray and condensation. The geocomposite was tested on both sides (which were structurally different) and both manufacturing directions. The effect of many parameters of the weathering tests (namely, composition of the weathering cycle, UV exposure temperature, UV irradiance, UV radiant exposure and test duration) was evaluated. The degradation suffered by the geocomposite (in the weathering tests) was assessed by monitoring changes in its tensile behaviour. The results, among other findings, showed that UV radiation was mainly responsible for the degradation of the geocomposite in the weathering tests. The effects of UV radiation were enhanced by increasing temperature or using higher UV irradiances. The increase in the total duration (or UV radiant exposure) of the weathering tests also resulted in a more pronounced degradation of the geocomposite.

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Literatur
1.
Zurück zum Zitat Koerner RM (2005) Designing with geosynthetics, 5th edn. Pearson Education Inc, Upper Saddle River, NJ, USA Koerner RM (2005) Designing with geosynthetics, 5th edn. Pearson Education Inc, Upper Saddle River, NJ, USA
2.
Zurück zum Zitat Shukla SK, Yin J-H (2006) Fundamentals of geosynthetic engineering, 1st edn. Taylor & Francis/Balkema, Leiden, The NetherlandsCrossRef Shukla SK, Yin J-H (2006) Fundamentals of geosynthetic engineering, 1st edn. Taylor & Francis/Balkema, Leiden, The NetherlandsCrossRef
3.
Zurück zum Zitat Greenwood JH, Schroeder HF, Voskamp W (2016) Durability of geosynthetics, 2nd edn. CRC Press, Boca Raton, FL, USA Greenwood JH, Schroeder HF, Voskamp W (2016) Durability of geosynthetics, 2nd edn. CRC Press, Boca Raton, FL, USA
9.
Zurück zum Zitat Maier C, Calafut T (1998) Polypropylene. The definitive user’s guide and databook. Plastic Design Library, New York, USA Maier C, Calafut T (1998) Polypropylene. The definitive user’s guide and databook. Plastic Design Library, New York, USA
11.
Zurück zum Zitat Allen SR (2016) Geotextile durability. In: Koerner RM (ed) Geotextiles: from design to applications, 1st edn. Woodhead Publishing Series in Textiles, Sawston, p 617 (No. 175) Allen SR (2016) Geotextile durability. In: Koerner RM (ed) Geotextiles: from design to applications, 1st edn. Woodhead Publishing Series in Textiles, Sawston, p 617 (No. 175)
15.
Zurück zum Zitat Moreira SP, Carneiro JR, Lopes ML (2010) Effect of natural weathering on the water permeability behaviour of nonwoven polypropylene geotextiles. In: Proceedings of the 9th International Conference on Geosynthetics, 2, Guarujá, Brazil p 829–832 Moreira SP, Carneiro JR, Lopes ML (2010) Effect of natural weathering on the water permeability behaviour of nonwoven polypropylene geotextiles. In: Proceedings of the 9th International Conference on Geosynthetics, 2, Guarujá, Brazil p 829–832
24.
Zurück zum Zitat EN 12224 (2000) Geotextiles and geotextile-related products—determination of the resistance to weathering. European Committee for Standardization, Brussels, Belgium EN 12224 (2000) Geotextiles and geotextile-related products—determination of the resistance to weathering. European Committee for Standardization, Brussels, Belgium
25.
Zurück zum Zitat ASTM D7238 (2017) Standard test method for effect of exposure of unreinforced polyolefin geomembrane using fluorescent UV condensation apparatus. American Society for Testing and Materials International, West Conshohocken, PA, USA ASTM D7238 (2017) Standard test method for effect of exposure of unreinforced polyolefin geomembrane using fluorescent UV condensation apparatus. American Society for Testing and Materials International, West Conshohocken, PA, USA
26.
Zurück zum Zitat ASTM D4355 (2018) Standard test method for deterioration of geotextiles by exposure to light, moisture and heat in a xenon arc type apparatus. American Society for Testing and Materials International, West Conshohocken, PA, USA ASTM D4355 (2018) Standard test method for deterioration of geotextiles by exposure to light, moisture and heat in a xenon arc type apparatus. American Society for Testing and Materials International, West Conshohocken, PA, USA
27.
Zurück zum Zitat EN ISO 10319 (2015) Geosynthetics—wide-width tensile test. European Committee for Standardization, Brussels, Belgium EN ISO 10319 (2015) Geosynthetics—wide-width tensile test. European Committee for Standardization, Brussels, Belgium
28.
Zurück zum Zitat Montgomery DC, Runger GC (2010) Applied statistics and probability for engineers, 5th edn. Wiley, New York, USAMATH Montgomery DC, Runger GC (2010) Applied statistics and probability for engineers, 5th edn. Wiley, New York, USAMATH
29.
Zurück zum Zitat EN ISO 9864 (2005) Geosynthetics—test method for the determination of mass per unit area of geotextiles and geotextile-related products. European Committee for Standardization, Brussels, Belgium EN ISO 9864 (2005) Geosynthetics—test method for the determination of mass per unit area of geotextiles and geotextile-related products. European Committee for Standardization, Brussels, Belgium
30.
Zurück zum Zitat EN ISO 9863-1 (2016) Geosynthetics—determination of thickness at specified pressures. Part 1: single layers. European Committee for Standardization, Brussels, Belgium EN ISO 9863-1 (2016) Geosynthetics—determination of thickness at specified pressures. Part 1: single layers. European Committee for Standardization, Brussels, Belgium
31.
Zurück zum Zitat EN 12226 (2012) Geosynthetics—general tests for evaluation following durability testing. European Committee for Standardization, Brussels, Belgium EN 12226 (2012) Geosynthetics—general tests for evaluation following durability testing. European Committee for Standardization, Brussels, Belgium
32.
Zurück zum Zitat CIE 85 (1989) Solar spectral irradiance, 1st edn. International Commission on Illumination, Vienna, Austria CIE 85 (1989) Solar spectral irradiance, 1st edn. International Commission on Illumination, Vienna, Austria
33.
Zurück zum Zitat EN 29073-3 (1992) Textiles—test methods for nonwovens. Part 3: determination of tensile strength and elongation. European Committee for Standardization, Brussels, Belgium EN 29073-3 (1992) Textiles—test methods for nonwovens. Part 3: determination of tensile strength and elongation. European Committee for Standardization, Brussels, Belgium
34.
Zurück zum Zitat ISO/TS 13434 (2020) Geosynthetics—guidelines for the assessment of durability. International Organization for Standardization, Geneva, Switzerland ISO/TS 13434 (2020) Geosynthetics—guidelines for the assessment of durability. International Organization for Standardization, Geneva, Switzerland
Metadaten
Titel
Laboratory Degradation of a Reinforcement PET-PP Geocomposite Under Accelerated Weathering Conditions
verfasst von
José Ricardo Carneiro
David Miranda Carlos
Maria de Lurdes Lopes
Publikationsdatum
01.09.2021
Verlag
Springer International Publishing
Erschienen in
International Journal of Geosynthetics and Ground Engineering / Ausgabe 3/2021
Print ISSN: 2199-9260
Elektronische ISSN: 2199-9279
DOI
https://doi.org/10.1007/s40891-021-00315-5

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