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Comparative assessment of the interlayer shear-bond strength ofgeogrid reinforcements in hot-mix asphalt

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dc.contributor.author Walubita, LF
dc.contributor.author Nyamuhokya, TP
dc.contributor.author Komba, Julius J
dc.contributor.author Tanvir, HA
dc.contributor.author Souliman, MI
dc.contributor.author Naik, B
dc.date.accessioned 2019-01-29T14:06:03Z
dc.date.available 2019-01-29T14:06:03Z
dc.date.issued 2018-12
dc.identifier.citation Walubita, L.F. et al. 2018. Comparative assessment of the interlayer shear-bond strength ofgeogrid reinforcements in hot-mix asphalt. Construction and Building Materials, vol. 191: 726-735 en_US
dc.identifier.issn 0950-0618
dc.identifier.uri https://www.sciencedirect.com/science/article/pii/S0950061818324322
dc.identifier.uri https://doi.org/10.1016/j.conbuildmat.2018.10.035
dc.identifier.uri http://hdl.handle.net/10204/10650
dc.description Copyright: 2018 Elsevier. Due to copyright restrictions, the attached PDF file contains the pre-print version of the published item. For access to the published version, please consult the publisher's website. en_US
dc.description.abstract With the increasing use of geogrid reinforcements to mitigate reflective cracking in hot-mix asphalt (HMA) overlays, interlayer (interface) bonding has become an even more critical aspect of HMA placement/construction to mitigate delamination and debonding of the HMA overlay. To comparatively evaluate the interlayer bond strength due to the effects of the geogrid reinforcements, the shear bond strength test was conducted in this laboratory study, using unreinforced control HMA samples as the reference datum. Cylindrical HMA samples (150 mm diameter) gyratory compacted in two 75-mm lift thicknesses, with the geogrid reinforcement in-between the two lifts, were used for testing at room temperature under a monotonically shear loading rate of 5 mm/min. Emulsified asphalt was used as the interlayer tack coat and six different geogrid materials, which are polyester-based (FA) and fiberglass-based (FG), were comparatively evaluated. As theoretically expected, the control (unreinforced) HMA samples exhibited superiority followed closely by samples reinforced with polyester-based geogrids. Although comparable to the values reported in the literature, HMA samples reinforced with fiberglass-based geogrids performed the poorest with the lowest interlayer bond strengths – that is the polyester-based outperformed the fiberglass-based geogrids. Overall, the interlayer bond strength exhibited a general decreasing trend with a decrease in the geogrid mesh size (open area), increase in the geogrid strand thickness, and material grade. Thus, in as much as reflective crack mitigation is structurally desired, due diligence must be cautiously exercised when selecting the geogrid type/grade for use in HMA reinforcement to ensure sufficient interlayer bonding and minimize any potential delamination/debonding problems in service. en_US
dc.language.iso en en_US
dc.publisher Elsevier en_US
dc.relation.ispartofseries Worklist;21944
dc.subject Reflective cracking en_US
dc.subject Geogrid en_US
dc.subject Fortgrid asphalt en_US
dc.subject FA en_US
dc.subject Fiberglass en_US
dc.subject FG en_US
dc.subject Shear en_US
dc.subject Bond strength en_US
dc.title Comparative assessment of the interlayer shear-bond strength ofgeogrid reinforcements in hot-mix asphalt en_US
dc.type Article en_US
dc.identifier.apacitation Walubita, L., Nyamuhokya, T., Komba, J. J., Tanvir, H., Souliman, M., & Naik, B. (2018). Comparative assessment of the interlayer shear-bond strength ofgeogrid reinforcements in hot-mix asphalt. http://hdl.handle.net/10204/10650 en_ZA
dc.identifier.chicagocitation Walubita, LF, TP Nyamuhokya, Julius J Komba, HA Tanvir, MI Souliman, and B Naik "Comparative assessment of the interlayer shear-bond strength ofgeogrid reinforcements in hot-mix asphalt." (2018) http://hdl.handle.net/10204/10650 en_ZA
dc.identifier.vancouvercitation Walubita L, Nyamuhokya T, Komba JJ, Tanvir H, Souliman M, Naik B. Comparative assessment of the interlayer shear-bond strength ofgeogrid reinforcements in hot-mix asphalt. 2018; http://hdl.handle.net/10204/10650. en_ZA
dc.identifier.ris TY - Article AU - Walubita, LF AU - Nyamuhokya, TP AU - Komba, Julius J AU - Tanvir, HA AU - Souliman, MI AU - Naik, B AB - With the increasing use of geogrid reinforcements to mitigate reflective cracking in hot-mix asphalt (HMA) overlays, interlayer (interface) bonding has become an even more critical aspect of HMA placement/construction to mitigate delamination and debonding of the HMA overlay. To comparatively evaluate the interlayer bond strength due to the effects of the geogrid reinforcements, the shear bond strength test was conducted in this laboratory study, using unreinforced control HMA samples as the reference datum. Cylindrical HMA samples (150 mm diameter) gyratory compacted in two 75-mm lift thicknesses, with the geogrid reinforcement in-between the two lifts, were used for testing at room temperature under a monotonically shear loading rate of 5 mm/min. Emulsified asphalt was used as the interlayer tack coat and six different geogrid materials, which are polyester-based (FA) and fiberglass-based (FG), were comparatively evaluated. As theoretically expected, the control (unreinforced) HMA samples exhibited superiority followed closely by samples reinforced with polyester-based geogrids. Although comparable to the values reported in the literature, HMA samples reinforced with fiberglass-based geogrids performed the poorest with the lowest interlayer bond strengths – that is the polyester-based outperformed the fiberglass-based geogrids. Overall, the interlayer bond strength exhibited a general decreasing trend with a decrease in the geogrid mesh size (open area), increase in the geogrid strand thickness, and material grade. Thus, in as much as reflective crack mitigation is structurally desired, due diligence must be cautiously exercised when selecting the geogrid type/grade for use in HMA reinforcement to ensure sufficient interlayer bonding and minimize any potential delamination/debonding problems in service. DA - 2018-12 DB - ResearchSpace DP - CSIR KW - Reflective cracking KW - Geogrid KW - Fortgrid asphalt KW - FA KW - Fiberglass KW - FG KW - Shear KW - Bond strength LK - https://researchspace.csir.co.za PY - 2018 SM - 0950-0618 T1 - Comparative assessment of the interlayer shear-bond strength ofgeogrid reinforcements in hot-mix asphalt TI - Comparative assessment of the interlayer shear-bond strength ofgeogrid reinforcements in hot-mix asphalt UR - http://hdl.handle.net/10204/10650 ER - en_ZA


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