ACCELERATED FULL SCALE TESTING OF LOW COST HEAVY DUTY PAVEMENTS - EXPERIENCE WITH THE ACCELERATED LOADING FACILITY (ALF). NEW ZEALAND ROADING SYMPOSIUM 1987. VOLUME 2
P Kadar
Abstract
P Kadar
Abstract
The accelerated loading facility has completed more than 4.2 million loading cycles up to date, and provided valuable information on the pavement performance under accelerated loading. Once the initial mechanical problems were overcome, the alf applied an average of 35000 load cycles per week. Three pavement types were tested, each typical to the current design and construction practice of heavy duty pavements of the host state road authority. The pavement performance and structural response were monitored by means of surface and sub-surface deflections, permanent deformations, in-depth strains and visual observation of surface deterioration. A method for assessing critical strains based on the measured surface deflection bowls and in-depth deflections was developed, which makes it possible to continuously monitor (and analyse) the structural performance of the tested pavements. Cross-reference between analytical approaches based on the equivalent layer thicknesses and on the surface curvature index yielded consistent results, increasing confidence in both approaches. The first two trials proved the adopted design and construction practices to be adequate by indicating long pavement lives. The experiment on the cement treated base pavements underlined the significance of the bond between the base layers as the lack of such a bond may cause premature failure despite the strength of the applied materials or structure. For the covering abstract of the symposium see IRRD 810782. (Author/TRRL)
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The accelerated loading facility has completed more than 4.2 million loading cycles up to date, and provided valuable information on the pavement performance under accelerated loading. Once the initial mechanical problems were overcome, the alf applied an average of 35000 load cycles per week. Three pavement types were tested, each typical to the current design and construction practice of heavy duty pavements of the host state road authority. The pavement performance and structural response were monitored by means of surface and sub-surface deflections, permanent deformations, in-depth strains and visual observation of surface deterioration. A method for assessing critical strains based on the measured surface deflection bowls and in-depth deflections was developed, which makes it possible to continuously monitor (and analyse) the structural performance of the tested pavements. Cross-reference between analytical approaches based on the equivalent layer thicknesses and on the surface curvature index yielded consistent results, increasing confidence in both approaches. The first two trials proved the adopted design and construction practices to be adequate by indicating long pavement lives. The experiment on the cement treated base pavements underlined the significance of the bond between the base layers as the lack of such a bond may cause premature failure despite the strength of the applied materials or structure. For the covering abstract of the symposium see IRRD 810782. (Author/TRRL)
Key concepts: Deflection (physics), Structural engineering, Geotechnical engineering, Crushed stone, Road surface, Engineering, Forensic engineering, Environmental science